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			<title>LITERATURE UPDATE Mar 06, 2026 - Mar 12, 2026</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/literature-update/49377-literature-update-mar-06-2026-mar-12-2026</link>
			<pubDate>Fri, 13 Mar 2026 01:19:57 GMT</pubDate>
			<description><![CDATA[LITERATURE UPDATE 
Mar 06, 2026 - Mar 12, 2026 
 
Literature search terms: biomech* &amp;amp; locomot* 
 
Publications are classified by BiomchBERT...]]></description>
			<content:encoded><![CDATA[<span style="font-size:16px"><b>LITERATURE UPDATE</b></span><br />
Mar 06, 2026 - Mar 12, 2026<br />
<br />
Literature search terms: biomech* &amp;amp; locomot*<br />
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Publications are classified by <a href="https://www.ryan-alcantara.com/projects/p88_BiomchBERT/" target="_blank">BiomchBERT</a>, a neural network trained on past Biomch-L Literature Updates. BiomchBERT is managed by <a href="https://biomch-l.isbweb.org/member/35936-jessica-murawski" target="_blank">Jessica Murawski</a> and <a href="https://biomch-l.isbweb.org/member/35931-roberto-castro-jr" target="_blank">Roberto Castro Jr.</a>, Doctoral Students at The Pennsylvania State University. Each publication has a score (out of 100%) reflecting how confident BiomchBERT is that the publication belongs in a particular category (top 2 shown). If something doesn't look right, email us at <a href="mailto:jam1798@psu.edu">jam1798@psu.edu</a> / <a href="mailto:rpc5743@psu.edu">rpc5743@psu.edu</a>.<br />
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Biomch-L LinkedIn: <a href="http://www.linkedin.com/in/biomch-l-06359638a" target="_blank">www.linkedin.com/in/biomch-l-06359638a</a>.&#8203;<br />
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<span style="font-size:16px"><b>*BONE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41806038" target="_blank">Obesity and long bone fractures in children. Systematic review.</a></b> Aly A, Aly T, <i>Archives of orthopaedic and trauma surgery</i>. (95.8% BONE; 1.0% ORTHOPAEDICS/SURGERY)<br />
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<span style="font-size:16px"><b>*BOTANY*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41811983" target="_blank">Sublethal effects of potato plant defenses induced via synthetic elicitors against the Colorado potato beetle (Coleoptera: Chrysomelidae).</a></b> Butcher AM, Lee J, Rondon SI, <i>Journal of insect science (Online)</i>. (70.7% BOTANY; 6.7% VETERINARY/AGRICULTURAL)<br />
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<span style="font-size:16px"><b>*CARDIOVASCULAR/PULMONARY*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41804229" target="_blank">Panoramic voltage-sensitive optical mapping of contracting hearts using cooperative multiview motion tracking with 12 cameras.</a></b> Chowdhary S, Lebert J, Dickman S, Manetta M, Gordon C, Christoph J, <i>The Journal of physiology</i>. (45.9% METHODS; 42.2% CARDIOVASCULAR/CARDIOPULMONARY)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41806696" target="_blank">Computational modelling of the fetal circulation: what could cardiovascular system models teach us about the heart-placenta axis?</a></b> Nagahawatte ND, Umapathy A, James JL, Clark AR, <i>Computers in biology and medicine</i>. (58.8% CARDIOVASCULAR/CARDIOPULMONARY; 36.6% MODELING)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41801685" target="_blank">Wireless Miniaturized Electromechanical System Enables Real-Time Biomechanical Monitoring of Aortic Aneurysm.</a></b> Li Y, Zhang C, Zong X, Zhang Y, Xue J, Liu H, Zhang Y, Zhai Y, Wang D, Liu X, Chu Y, Liu X, Zhao H, <i>ACS sensors</i>. (71.4% CARDIOVASCULAR/CARDIOPULMONARY; 23.9% METHODS)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41785970" target="_blank">Strain detects substrate: Pioneering non-invasive visualization of atrial electropathology.</a></b> Linderhof MHC, Freriks AI, van Doorn ECH, Zhang C, Dai L, Nguyen HH, Nguyen DT, Stindt TDA, Taverne YJHJ, van Schie MS, de Groot NMS, van den Bosch AE, <i>International journal of cardiology</i>. (88.6% CARDIOVASCULAR/CARDIOPULMONARY; 2.8% BOTANY)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41809708" target="_blank">When anatomy becomes pathology: Rethinking carotid-hyoid contact in cerebrovascular events.</a></b> Jiang SY, Li R, <i>World journal of radiology</i>. (79.9% CARDIOVASCULAR/CARDIOPULMONARY; 3.4% BOTANY)<br />
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<span style="font-size:16px"><b>*CELLULAR*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41817391" target="_blank">Label-Free, AI-Driven Evanescent Microscopy Decodes Single-Cell Membrane Protein Binding Kinetics and Adhesion Biomechanics.</a></b> Huang C, Zhang J, Liu Z, Wang M, Li L, Xu J, Chen Y, Zhao Y, Zhang P, <i>Analytical chemistry</i>. (74.8% CELLULAR/SUBCELLULAR; 20.1% METHODS)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41807667" target="_blank">Identification of pharmaceuticals and environmental contaminants as obesogens inducing a locomotion-independent thrifty phenotype.</a></b> Al Kassir S, Merc&amp;eacute; T, Bourcier LM, Pedemay S, Soares M, Knoll-Gellida A, Babin PJ, <i>Communications biology</i>. (28.9% CELLULAR/SUBCELLULAR; 17.0% COMPARATIVE)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41806839" target="_blank">LIFUS-driven engineered bacteria reprogram immunosuppressive niches via mechano-NOTCH signaling.</a></b> Lin L, Li X, Guo W, Xie J, Li X, Guan X, Zhao C, Yin H, Xu H, <i>Cell reports. Medicine</i>. (96.4% CELLULAR/SUBCELLULAR; 2.6% TISSUE/BIOMATERIAL)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41802611" target="_blank">Peripheral Cannabinoid Receptor Activation Attenuates Frostbite-Induced Chronic Pain via Modulation of TRP Channels, Neuroinflammation, and Autophagy.</a></b> Ummadisetty O, Londhe RD, Verma N, Wadikar V, Tiwari V, <i>Free radical biology &amp;amp; medicine</i>. (17.3% CELLULAR/SUBCELLULAR; 15.8% ERGONOMICS)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41796893" target="_blank">A multi-omics comparison unveils convergent and divergent antidepressant mechanisms of fluoxetine and St. John's wort extract.</a></b> Zhang J, Cai Y, Zhang P, Hao X, Guo B, Zhang W, Wu Y, Sun J, Xu X, Li W, Zhang B, Zhang S, Zhang W, Kong D, <i>Journal of proteomics</i>. (40.5% CELLULAR/SUBCELLULAR; 14.7% TISSUE/BIOMATERIAL)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41785603" target="_blank">New co-drugs of O-demethylvenlafaxine and NSAIDs exert antidepressant effects by alleviating inflammation, oxidative stress, and increasing neurotransmitter.</a></b> Song Y, Song J, Liu S, Zhang J, Liu Z, Chen H, Wang S, Zhuang T, Zhang G, <i>International immunopharmacology</i>. (39.5% CELLULAR/SUBCELLULAR; 10.9% TISSUE/BIOMATERIAL)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41793839" target="_blank">Chronic stress disrupts Th17/Treg balance to induce depressive-like behaviors: Preclinical and clinical evidence.</a></b> Zhang H, Fu TT, Zhang WT, Tian F, <i>Journal of neuroimmunology</i>. (48.1% CELLULAR/SUBCELLULAR; 14.1% TISSUE/BIOMATERIAL)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41788237" target="_blank">ECM-free lung tumoroids generated by an air-stretchable microfluidic chip.</a></b> Chauhdari T, Su J, Lv J, Ding Y, <i>In vitro models</i>. (81.2% CELLULAR/SUBCELLULAR; 15.5% TISSUE/BIOMATERIAL)<br />
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<span style="font-size:16px"><b>*COMPARATIVE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41818794" target="_blank">Adult nutrition strongly affects insect cuticle thickness and injury resistance.</a></b> Greenway EV, Woodman T, Emberts Z, Chen S, Federle W, Miller CW, <i>Journal of the Royal Society, Interface</i>. (85.0% COMPARATIVE; 9.1% EVOLUTION/ANTHROPOLOGY)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41808535" target="_blank">Camponotus japonicus locomotion on vertically undulating mesoscale rough terrain.</a></b> Zeng M, Mao L, Meng C, Ding Y, Fu H, Ansari M, Luo Z, Yu J, An S, <i>The Journal of experimental biology</i>. (86.2% COMPARATIVE; 9.7% GAIT/LOCOMOTION)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41788010" target="_blank">Sprinting performance is linked to surface activity in scorpions.</a></b> Gefen E, Atiya S, David LM, Talal S, <i>The Journal of experimental biology</i>. (95.2% COMPARATIVE; 2.9% EVOLUTION/ANTHROPOLOGY)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41797016" target="_blank">Investigation of the impacts of second-generation antihistamines on free-living marine nematodes and their interaction with ZnS nanoparticles: Mechanistic insights from community and population approaches and molecular interactions modeling.</a></b> Ghannem S, Labiadh H, Ishak S, Louiz S, Derguini A, Idres T, Grassi E, Semprucci F, Badraoui R, Ben Hamadi N, Chaudhary AA, Alsalamah SA, Bendif H, Rebai A, Boufahja F, <i>Marine environmental research</i>. (60.6% COMPARATIVE; 7.7% EVOLUTION/ANTHROPOLOGY)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41786893" target="_blank">Sex-specific but not urbanisation-related behavioural differences in a wolf spider, Pardosa alacris.</a></b> Magura T, Horv&amp;aacute;th R, Mizser S, T&amp;oacute;th M, Kozma FS, L&amp;ouml;vei GL, <i>Scientific reports</i>. (64.3% COMPARATIVE; 29.2% EVOLUTION/ANTHROPOLOGY)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41798718" target="_blank">Integrated morphological and transcriptomic analysis of sucker development in Octopus minor.</a></b> Kim Y, Lee CJ, Ryu KB, Aryal YP, Jo S, Seo DC, Song JH, Jeong BG, Lee MJ, An SH, Jung SH, Lee HY, Cho SJ, <i>Animal cells and systems</i>. (86.4% COMPARATIVE; 5.4% EVOLUTION/ANTHROPOLOGY)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41791641" target="_blank">Sleep deprivation in zebrafish larvae: Behavior and cognitive alterations.</a></b> Altenhofen S, Patella LZ, Petersen BD, Nabinger DD, Bertoncello KT, Bonan CD, <i>Progress in neuro-psychopharmacology &amp;amp; biological psychiatry</i>. (71.8% COMPARATIVE; 10.1% NEURAL)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41785586" target="_blank">Additive and non-additive effects of artificial light at night and ocean warming on the physiology and behavior of an intertidal fish.</a></b> Quintanilla-Ahumada D, Maturana D, Lynn KD, Z&amp;uacute;&amp;ntilde;iga-Cueto N, Miranda-Benabarre C, Jahnsen-Guzm&amp;aacute;n N, Pulgar J, Quij&amp;oacute;n PA, Duarte C, <i>Marine pollution bulletin</i>. (76.8% COMPARATIVE; 7.3% VETERINARY/AGRICULTURAL)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41810485" target="_blank">Convergent mechanisms, divergent strategies: a comparison of nectar intake between a generalist and a specialist bat species.</a></b> Quinche LL, Garz&amp;oacute;n-Agudelo F, Santana SE, L&amp;oacute;pez-Ar&amp;eacute;valo HF, Rico-Guevara A, <i>The Journal of experimental biology</i>. (70.9% COMPARATIVE; 21.4% EVOLUTION/ANTHROPOLOGY)<br />
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<span style="font-size:16px"><b>*DENTAL/ORAL/FACIAL*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41807768" target="_blank">Effects of attachment design and location on derotation of mandibular second premolars : A finite element analysis.</a></b> Kaya D, Saglam-Aydinatay B, <i>Journal of orofacial orthopedics = Fortschritte der Kieferorthopadie : Organ/official journal Deutsche Gesellschaft fur Kieferorthopadie</i>. (99.4% DENTAL/ORAL/FACIAL; 0.1% MODELING)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41804975" target="_blank">Osseodensification versus conventional site preparation in cylindrical implants: A randomized controlled trial.</a></b> Shah M, Kandhan TS, Hakam A, Elbishari H, Rad FA, Ameen M, Baqain ZH, Alsabeeha NHM, Atieh M, <i>Journal of periodontology</i>. (98.6% DENTAL/ORAL/FACIAL; 0.4% BONE)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41804929" target="_blank">Advancements in Design and Application of Absorbable Materials for Orbital Fracture Reconstruction.</a></b> Ren Z, Xiong C, Liao H, <i>Tissue engineering. Part B, Reviews</i>. (40.0% TISSUE/BIOMATERIAL; 28.4% DENTAL/ORAL/FACIAL)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41794718" target="_blank">A web-based augmented reality system for orthodontic biomechanics: perceived usability and acceptability among dental students.</a></b> Li X, Miza TFS, Saiful SSN, Rao GKL, Ridzuan F, Hashim H, Ismail Z, Zakaria N, Mokhtar N, <i>BMC oral health</i>. (95.4% DENTAL/ORAL/FACIAL; 0.5% METHODS)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41792397" target="_blank">Impact of additive manufacturing process of titanium implants on peri-implant human bone.</a></b> Prado WM, Asbi T, Martins R, Iezzi G, Piattelli A, Pinheiro ACP, Turbino ML, Marques ACP, Souza JGS, Shibli JA, <i>Oral and maxillofacial surgery</i>. (79.9% DENTAL/ORAL/FACIAL; 8.6% TISSUE/BIOMATERIAL)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41792566" target="_blank">An Automated Framework for Mandibular Reconstruction: Evaluation and Clinical Application.</a></b> Li C, Guo Y, Yang R, Chen X, Zhang S, <i>Head &amp;amp; neck</i>. (60.1% DENTAL/ORAL/FACIAL; 17.0% MODELING)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41805534" target="_blank">Consistency of implant direction and RPD guide planes prepared with CAD-CAM templates, guiding rod templates, and freehand template: An in vitro comparison.</a></b> Cheng N, Shan W, Wen T, Wu DJ, <i>The Journal of prosthetic dentistry</i>. (95.2% DENTAL/ORAL/FACIAL; 2.3% PROSTHETICS/ORTHOTICS)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41785739" target="_blank">Fatigue survival rate of different core and veneer designs for anterior all-ceramic crowns.</a></b> de Carvalho ABG, de Andrade GS, Dapieve KS, Machry RV, Ramos NC, Valandro LF, Tribst JPM, Saavedra GSFA, <i>Journal of the mechanical behavior of biomedical materials</i>. (95.8% DENTAL/ORAL/FACIAL; 1.8% TISSUE/BIOMATERIAL)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41816277" target="_blank">Biomechanical performance of poly-ether-ether-ketone (PEEK) vs. titanium orthodontic mini-screws in artificial bone: An in vitro investigation.</a></b> Al-Hamadani AA, Alrubayee MA, <i>Journal of orthodontic science</i>. (95.4% DENTAL/ORAL/FACIAL; 1.7% TISSUE/BIOMATERIAL)<br />
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<span style="font-size:16px"><b>*ERGONOMICS*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41806120" target="_blank">Adaptation to a Whole-Body Powered Exoskeleton: Human-Exoskeleton Coordination During Load-Handling Tasks.</a></b> Park H, Kim S, Nussbaum MA, Srinivasan D, <i>Annals of biomedical engineering</i>. (69.4% ERGONOMICS; 22.7% PROSTHETICS/ORTHOTICS)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41813154" target="_blank">Surface Electromyography as a Method for Characterizing Mammogram Discomfort: Cross-Sectional Questionnaire Study of Procedural Stress.</a></b> Gielo-Perczak K, McNaboe R, Posada-Quintero H, <i>JMIR human factors</i>. (92.9% ERGONOMICS; 3.2% METHODS)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41788019" target="_blank">Nutrients and food supplements for the prevention of musculoskeletal diseases: an umbrella review.</a></b> Pellegrini M, Vecchietti A, Briganti GL, Granvillano G, Lugli C, Raso E, Spatari G, Noviello C, Mercogliano M, Strano P, Cappuccio G, Minutolo G, Urbano T, Lorenzon A, <i>Nutrition research reviews</i>. (47.9% ERGONOMICS; 13.0% REHABILITATION)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41800200" target="_blank">Prevention of Pressure-induced Soft Tissue Injuries in Acute and Chronic Hospital Settings: A Biomechanical Comparison of Current Methods and Materials.</a></b> Rapp SJ, Pierzchajlo N, Gordon CB, Anderson SR, <i>Plastic and reconstructive surgery. Global open</i>. (52.5% ERGONOMICS; 17.6% TISSUE/BIOMATERIAL)<br />
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<span style="font-size:16px"><b>*EVOLUTION/ANTHROPOLOGY*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41804182" target="_blank">A finite element study of soft-tissue deformation during birth in australopithecines: Assessing pelvic floor stress and fetal head rotation in early hominins.</a></b> Fr&amp;eacute;mondi&amp;egrave;re P, Thollon L, Webb NM, Haeusler M, Marchal F, <i>Anatomical record (Hoboken, N.J. : 2007)</i>. (93.2% EVOLUTION/ANTHROPOLOGY; 3.5% ERGONOMICS)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41804177" target="_blank">Pelvic morphology and body size in relation to the preauricular sulcus: Evidence from medieval to modern Iberia.</a></b> Garc&amp;iacute;a-Gonz&amp;aacute;lez R, Mu&amp;ntilde;oz-Guarinos J, Cirotto N, D&amp;iacute;az-Navarro S, Rodr&amp;iacute;guez L, Carretero JM, <i>Anatomical record (Hoboken, N.J. : 2007)</i>. (92.4% EVOLUTION/ANTHROPOLOGY; 4.3% ERGONOMICS)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41792784" target="_blank">On the origins of the sabre-toothed felid model: functional anatomy of the hindlimb in Promegantereon ogygia (Felidae, Machairodontinae, Smilodontini) from the Late Miocene of Batallones-1 (Madrid, Spain).</a></b> Salesa MJ, Siliceo G, Ant&amp;oacute;n M, Pastor JF, <i>BMC zoology</i>. (70.9% EVOLUTION/ANTHROPOLOGY; 18.7% COMPARATIVE)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41800621" target="_blank">Phylogenetic Influence on Bone Material Stiffness in the Mandibles of Cercopithecid Primates.</a></b> Daegling DJ, Pampush JD, Duque AC, Massimin JL, McGraw WS, <i>American journal of biological anthropology</i>. (75.6% EVOLUTION/ANTHROPOLOGY; 13.3% BONE)<br />
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<span style="font-size:16px"><b>*GAIT/LOCOMOTION*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41803906" target="_blank">Gait analysis reveals new outcome measures for monitoring disease progression in individuals with late-onset Pompe disease.</a></b> Claramunt-Molet M, Pegueroles J, Pi-Cervera A, Rico M, Idelsohn-Zielonka S, Dom&amp;iacute;nguez-Gonz&amp;aacute;lez C, Corti M, Ant&amp;oacute;n V, Salabarria SM, Wong K, James MK, Byrne BJ, D&amp;iacute;az-Manera J, <i>Journal of neuroengineering and rehabilitation</i>. (83.3% GAIT/LOCOMOTION; 5.9% REHABILITATION)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41811828" target="_blank">The Interlimb Asymmetry-Locomotor Capacity Nexus: A Two-Year Longitudinal Investigation in Ambulatory Children With Unilateral Cerebral Palsy.</a></b> Elnaggar RK, Elfakharany MS, <i>American journal of physical medicine &amp;amp; rehabilitation</i>. (65.7% GAIT/LOCOMOTION; 19.9% REHABILITATION)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41795356" target="_blank">The impact of pedestrian body steering movements on collision avoidance and gaze behaviours: Potential influence of athletic training.</a></b> Bourgaize SM, Cinelli ME, Fiset F, McFadyen BJ, <i>Human movement science</i>. (40.9% GAIT/LOCOMOTION; 18.1% SPORT/EXERCISE)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41791264" target="_blank">Spatiotemporal mapping of plantar shear forces during human walking using a flexible thin-film sensor.</a></b> Nishizawa K, Ogihara N, <i>Journal of biomechanics</i>. (40.6% HAND/FINGER/FOOT/TOE; 36.7% GAIT/LOCOMOTION)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41793889" target="_blank">Multiplanar kinematic deviations in idiopathic toe walking: A comparison with voluntary toe walking gait.</a></b> Chiu CH, Evrendilek H, Stebbins J, Zavatsky A, Kothari A, <i>Gait &amp;amp; posture</i>. (89.3% GAIT/LOCOMOTION; 7.0% HAND/FINGER/FOOT/TOE)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41806457" target="_blank">Altered gait strategies show inconsistent medial compartment unloading in varus medial knee osteoarthritis awaiting high tibial osteotomy.</a></b> Bowd J, Van Rossom S, Elson DW, Wilson C, Jonkers I, Holt C, Whatling GM, <i>Clinical biomechanics (Bristol, Avon)</i>. (42.4% GAIT/LOCOMOTION; 25.7% JOINT/CARTILAGE)<br />
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<span style="font-size:16px"><b>*HAND/FINGER/FOOT/TOE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41809639" target="_blank">Current evidence on non-surgical therapies for Dupuytren's disease: A clinical review.</a></b> Amigo I, Heras-Palou C, <i>Journal of hand and microsurgery</i>. (92.6% HAND/FINGER/FOOT/TOE; 1.6% ERGONOMICS)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41793201" target="_blank">Outcomes and Complications of First Tarsometatarsal Plantarflexion Bone Block Arthrodesis With a Precontoured Allograft Wedge.</a></b> Chrea B, Najdawi K, Dalamaggas A, Femino J, Coetzee C, <i>Foot &amp;amp; ankle international</i>. (88.9% HAND/FINGER/FOOT/TOE; 8.6% ORTHOPAEDICS/SURGERY)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41813425" target="_blank">Comparison of Upper Body Joint and Hand Motions in Eating Solid Foods With Chopsticks and Semisolid Foods With a Spoon in Healthy Males and Females: Observational Study.</a></b> Nakatake J, Maeda S, Miyazaki S, Arakawa H, Chosa E, <i>JMIR rehabilitation and assistive technologies</i>. (47.4% HAND/FINGER/FOOT/TOE; 33.2% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41792402" target="_blank">&quot;Fate of pressure-bearing flaps: long-term observations&quot;.</a></b> Lee MK, Park BY, <i>Scientific reports</i>. (95.9% HAND/FINGER/FOOT/TOE; 1.6% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41808744" target="_blank">Biomechanical assessment of grasping postures in individuals with rheumatoid arthritis when holding adaptive silverware.</a></b> Jordon M, Levine D, Richards J, Poole C, Padalino C, Babbitt K, Brit M, <i>Frontiers in rehabilitation sciences</i>. (64.8% HAND/FINGER/FOOT/TOE; 29.5% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41795573" target="_blank">In-silico biomechanical simulation of tendon transfers for finger extension in radial nerve palsy.</a></b> Lee BW, Hong WK, Hwang JS, Kim KS, Gong HS, <i>Journal of plastic, reconstructive &amp;amp; aesthetic surgery : JPRAS</i>. (79.6% HAND/FINGER/FOOT/TOE; 6.1% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41793907" target="_blank">Material properties of intrinsic foot structures in individuals with plantar fasciitis.</a></b> Bell EA, Ringleb SI, Willson JD, Meardon SA, Domire ZJ, <i>Clinical biomechanics (Bristol, Avon)</i>. (98.7% HAND/FINGER/FOOT/TOE; 0.4% TENDON/LIGAMENT)<br />
<br />
<br />
<span style="font-size:16px"><b>*JOINT/CARTILAGE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41798627" target="_blank">Femorotibial degeneration equilibrium analysis for objective and clinically interpretable knee osteoarthritis stratification.</a></b> Govindharaj I, Rajaram G, Ezhilarasan KK, Viswanath J, <i>Journal of orthopaedics</i>. (59.4% JOINT/CARTILAGE; 34.2% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41812464" target="_blank">A mixed reality framework for interpretable and explainable joint replacement assessment.</a></b> Ulrich L, Innocente C, Marullo G, Audisio A, Aprato A, Mass&amp;egrave; A, Moos S, Vezzetti E, <i>International journal of medical informatics</i>. (45.1% JOINT/CARTILAGE; 26.7% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41802654" target="_blank">Arthroscopic debridement with microfragmented adipose tissue for wrist and hand chondral lesions in professional athletes.</a></b> Raggini F, Lombardo MDM, Salini V, Pegoli L, <i>Hand surgery &amp;amp; rehabilitation</i>. (49.7% JOINT/CARTILAGE; 29.8% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41792538" target="_blank">The relationship between real-time ultrasound-detected extra-articular soft tissue pathologies and knee pain in osteoarthritis: a cross-sectional study.</a></b> Ghouri A, Budworth L, Wakefield RJ, Kingsbury SR, Conaghan PG, <i>Clinical rheumatology</i>. (95.1% JOINT/CARTILAGE; 1.5% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41786714" target="_blank">Assessing the micromechanical architecture of joint tissues with speckle rheological microscopy.</a></b> Leartprapun N, Guastaldi FPS, Randolph MA, Redmond RW, Nadkarni SK, <i>Nature communications</i>. (68.7% JOINT/CARTILAGE; 17.3% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41791452" target="_blank">Glenohumeral Arthritis Impairs Shoulder Mobility and Promotes Dynamic Compensatory Strategies During Overhead Reach.</a></b> Morriss N, Castle P, Greif DN, Pezzullo J, Ambalavanar M, Manning J, Shu Y, Earnhart J, Ramirez G, Nicandri G, Mannava S, Haddas R, Voloshin I, <i>Journal of shoulder and elbow surgery</i>. (64.0% JOINT/CARTILAGE; 15.2% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41815662" target="_blank">Prevalence of Coronal Tibiofemoral Subluxation in Varus Osteoarthritis Knee and its Correlation with Bone Morphometry - A X-Ray Based Study.</a></b> Kumar RM, Naaharaaj S, Kandhasamy V, Sivanandan MH, Pushpasekaran N, Vivekkumar M, <i>Journal of orthopaedic case reports</i>. (80.5% JOINT/CARTILAGE; 9.7% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41809431" target="_blank">Portable electronic devices for mechanotherapy and operative treatment of osteoarthritis.</a></b> Xu R, Jiang X, Tao Y, Fang S, Li J, Zhao F, Wang F, Wang L, Zhang J, <i>Mechanobiology in medicine</i>. (40.8% JOINT/CARTILAGE; 27.0% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41804254" target="_blank">The Influence of Vertical-Oriented Microstructures on the Properties of 3D-Printed 5Gt-7Alg-3HA Cartilage Scaffolds.</a></b> Wu X, Chen K, Chen Q, Zhang X, Feng C, Li X, Zhang D, <i>Macromolecular bioscience</i>. (65.5% JOINT/CARTILAGE; 30.8% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41815777" target="_blank">Molecular cartilage pathology following anterior cruciate ligament reconstruction: a systematic review of MRI studies.</a></b> Alfayyadh A, <i>Frontiers in surgery</i>. (68.5% JOINT/CARTILAGE; 16.2% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41799345" target="_blank">Off-axis biomechanical alterations and related interventions in medial knee osteoarthritis: a mini review.</a></b> Li Z, Baghi R, Zhang LQ, <i>Frontiers in rehabilitation sciences</i>. (96.1% JOINT/CARTILAGE; 1.8% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41798573" target="_blank">Reviving a Skewed Dyskinetic Scapula Secondary to Ventral Exostosis: A Case Report.</a></b> Meiyappan SK, Reddy GM, Pushpasekaran N, Sivanandan H, <i>Cureus</i>. (35.3% JOINT/CARTILAGE; 16.8% BONE)<br />
<br />
<br />
<span style="font-size:16px"><b>*METHODS*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41817209" target="_blank">High-performance PVDF/borophene-based TENG for energy harvesting and self-sustaining health monitoring in manual treadmill systems.</a></b> Radhakrishnan S, Vijoy KV, Tang Y, Andersson MR, Santhanakrishnan T, John H, <i>Nanoscale</i>. (68.3% METHODS; 7.5% ROBOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41817006" target="_blank">AI-Assisted Self-Powered Wearable Dual-Mode Sensor With TENG and Stretchable Optical Fiber for Neurological Disorder Diagnostics.</a></b> Li T, Liu H, Liu G, Wang Q, Zhou H, Liu G, Xu Y, Wang J, Wang Z, Zhu F, Luo F, Wang ZL, Zhang C, <i>Advanced science (Weinheim, Baden-Wurttemberg, Germany)</i>. (92.8% METHODS; 1.9% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41805507" target="_blank">Single-Camera Knee Adduction Moment Estimation for Individuals with Knee Osteoarthritis via a Novel Spatio-Temporal Graph Transformer Network.</a></b> Wang H, Liang K, Zhu K, Xu C, Mansour O, Lu Q, Chen Y, Xu Z, Liu G, Hu H, Shull PB, <i>IEEE transactions on neural systems and rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society</i>. (81.2% METHODS; 9.9% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41803411" target="_blank">Automatic pose estimation in newborn infants: Lessons from the Baby Grow study.</a></b> Sotoodeh MS, Ossmy O, Donati G, Hall J, Rowan H, Forrester GS, <i>Behavior research methods</i>. (94.0% METHODS; 1.2% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41810094" target="_blank">Monitoring Zoo Elephant Rumble Activity Using Combined Seismic and Acoustic Data.</a></b> Limberger F, R&amp;uuml;mpker G, Wesemann R, Komeazi A, Spengler T, Becker M, <i>Ecology and evolution</i>. (45.0% METHODS; 23.9% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41792136" target="_blank">ULTRA-MoCap: A Multimodal IMU and sEMG Dataset for Upper Body Joint Kinematics Analysis.</a></b> Fritsche O, Camacho S, Hossain MSB, Halfpenny T, Arciniegas C, Dranetz J, Hadley D, Guo Z, Choi H, <i>Scientific data</i>. (93.4% METHODS; 1.5% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41792135" target="_blank">Motion capture dataset of 137 post-operative total hip replacement patients performing activities of daily living.</a></b> Lunn DE, De Pieri E, Chapman GJ, Lund ME, Ferguson SJ, Redmond AC, <i>Scientific data</i>. (64.9% METHODS; 16.3% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41793837" target="_blank">Development and validation of a deep learning markerless system for lower-limb kinematics in hip and knee osteoarthritis population.</a></b> Wang J, Li T, Xu W, Hu B, Xu F, Song B, Nie Y, Fan Y, Li K, <i>Journal of biomechanics</i>. (93.6% METHODS; 2.1% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41816672" target="_blank">Comparison of elastography score and strain ratio values according to the presence of stress urinary incontinence in transperineal elastography.</a></b> Ata C, Atlihan U, Bildaci TB, Peker ME, Ozer M, Kantarci S, Karaca SY, Ileri A, <i>Frontiers in medicine</i>. (71.1% METHODS; 9.4% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41788469" target="_blank">Appearance-based computer vision pipeline for multi-animal monitoring of canine activity, behavior and clinical observations.</a></b> Eberhardt E, Plochaet J, Ophoff T, De Feyter F, De Landtsheer S, Teuns G, Vergauwen M, Feyen B, Goedem&amp;eacute; T, Kopljar I, <i>Frontiers in toxicology</i>. (52.7% METHODS; 40.1% VETERINARY/AGRICULTURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41798501" target="_blank">Current Trends and Future Directions in the Diagnosis and Management of Pediatric Orthopedic Disorders.</a></b> Al-Rumaih MH, Al-Otaibi AF, Almukhlafi TS, <i>Cureus</i>. (41.6% METHODS; 21.1% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41800427" target="_blank">A Pressure Regulator Platform for Applying Biomechanical Stimuli on Organ-on-A-Chip Systems with Physiological and Pathological Relevancy.</a></b> Garciamendez-Mijares CE, Rojas FA, Ruiz DSR, Mei X, Hernandez P, Gonzalez BS, Canchola JGM, Rivera VAM, Rodriguez R, Mestre FL, Maharjan S, Gholizadeh S, Gerhard-Herman MD, Zhang YS, <i>Regenerative engineering and translational medicine</i>. (52.2% METHODS; 19.4% TISSUE/BIOMATERIAL)<br />
<br />
<br />
<span style="font-size:16px"><b>*MODELING*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41798052" target="_blank">Effect of changes in the arm physical parameters on the minimum torque-change trajectories of human reaching movements.</a></b> Muramatsu K, Kagawa T, Ogihara N, <i>Cognitive neurodynamics</i>. (73.7% MODELING; 10.2% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41817970" target="_blank">Understanding Adversarial Imitation Learning in Small Sample Regime: A Stage-Coupled Analysis.</a></b> Xu T, Li Z, Yu Y, Luo ZQ, <i>IEEE transactions on pattern analysis and machine intelligence</i>. (27.3% MODELING; 22.1% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41814442" target="_blank">AI-powered biomechanical modeling for ACL-reconstructed knees: predicting knee joint contact forces via computer vision and deep learning.</a></b> Chen T, Zhou Z, Xu D, Yuan Y, Zhou H, Ge Q, Jie T, Wang M, Xiang L, Fekete G, Ugbolue UC, Gu Y, <i>Journal of neuroengineering and rehabilitation</i>. (31.4% MODELING; 27.4% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41811418" target="_blank">Patient-Specific Computational Model of Abdominal Wall Simulating Hernia Defect Closure to Predict Tension in the Posterior and Anterior Rectus Sheath.</a></b> Jellal M, Jourdan A, Joliat GR, Passot G, Le Ruyet A, <i>Annals of biomedical engineering</i>. (82.3% MODELING; 10.5% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41795044" target="_blank">A Modular Computational Approach for Assessing Active and Passive Force Contributions in Interstitial Lymphatic Fluid Uptake.</a></b> Jayathungage Don TD, Argus F, Safaei S, Russell PS, Phillips AR, Reynolds HM, <i>Annals of biomedical engineering</i>. (42.1% CARDIOVASCULAR/CARDIOPULMONARY; 36.7% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41792381" target="_blank">Prediction of Massage Force and Intra-abdominal Wall Deformation During Massage by a Digital Twin Model Based on an Abdominal Finite Element Model.</a></b> Fu J, Du Y, Tang X, Yu H, <i>Annals of biomedical engineering</i>. (73.4% MODELING; 9.3% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41808508" target="_blank">Coupled finite element analysis of the hip joint and spine in normal individuals and patients with developmental dysplasia of the hip.</a></b> Gao Y, Qiao G, Ma Z, Ma Z, Cui Q, Chen S, Li H, <i>Zhongguo gu shang = China journal of orthopaedics and traumatology</i>. (76.4% MODELING; 13.9% JOINT/CARTILAGE)<br />
<br />
<br />
<span style="font-size:16px"><b>*MUSCLE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41816359" target="_blank">A study evaluating differences in 3D upper limb kinematics and surface electromyography measures in adults with and without facioscapulohumeral dystrophy.</a></b> Philp F, Seyres M, Emery N, Kulshrestha R, Chadwick EK, <i>JSES reviews, reports, and techniques</i>. (51.1% MUSCLE; 19.1% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41785434" target="_blank">Longitudinal Motor Function Changes in Adults With Late-Onset Pompe Disease: Key Determinants and Clinical Thresholds.</a></b> Maulet T, Bonnyaud C, Dubois F, Roche N, Derridj-Ait Younes N, Amthor H, Cattagni T, Laforet P, <i>Neurology</i>. (52.1% MUSCLE; 20.7% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41805875" target="_blank">Biomechanical Model of the Levator Ani Muscle: Identifying the Greatest Strain Areas in Its Subdivisions.</a></b> Zapletal J, Cechova H, Jansova M, Cimrman R, Hyncik L, Krofta L, Robova H, Hajkova Hympanova L, <i>International urogynecology journal</i>. (92.4% MUSCLE; 6.6% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41790242" target="_blank">Anatomical insights into a five-bellied gastrocnemius muscle: a case report.</a></b> Lira-Bandeira WG, de Carvalho Medeiros I, Montello MB, Landfald IC, Triantafyllou G, Olewnik &#321;, Cavalcante JC, Abreu BJ, <i>Surgical and radiologic anatomy : SRA</i>. (99.0% MUSCLE; 0.3% NEURAL)<br />
<br />
<br />
<span style="font-size:16px"><b>*NEURAL*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41813803" target="_blank">Perilesional neuromodulation replaces lost sensorimotor function in persons with spinal cord injury.</a></b> Calvert JS, Parker SR, Govindarajan LN, Darie R, Shaaya E, Solinsky R, Del Valle LM, Miranda P, Jang J, Tiwari E, Syed S, Villalobos RM, Aguiar LM, Taylor JA, Tang H, McPherson S, Xue W, Carayannopoulos AG, Oyelese AA, Gokaslan ZL, Bansal AK, Resnik LJ, Serre T, Fridley JS, Borton DA, <i>Nature biomedical engineering</i>. (46.7% REHABILITATION; 39.8% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41797106" target="_blank">Bisphenol A disrupts circadian locomotor rhythms via m6A-dependent nr1d1 destabilization in zebrafish larvae.</a></b> Kong WY, Chen PY, Shen O, Cai YN, Liu WX, Li XJ, Lu SZ, Bian W, Wang H, Wang YH, Wu LJ, Ji C, Song XY, Zhang J, <i>Ecotoxicology and environmental safety</i>. (54.5% NEURAL; 26.2% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41792235" target="_blank">Efficient generation of human dorsal spinal GABAergic progenitors for the treatment of spinal cord injury.</a></b> Feng X, Wan Y, Peng M, Cheung YT, Lin Z, Tam KW, Fan C, Yang Y, Zhan D, Zhu H, Yu Y, Wang X, Liu Q, Zhu X, Chan YS, Cheung M, Cheung CW, Liu JA, <i>Experimental &amp;amp; molecular medicine</i>. (67.1% NEURAL; 19.0% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41790887" target="_blank">Time-dependent adaptations of damaged neurons and their microenvironment in the regenerating adult zebrafish spinal cord.</a></b> Lafouasse L, Koutsogiannis K, Dai YE, Del Vecchio L, Pedroni A, Tsagkogiannis D, Habicher J, Ampatzis K, <i>Science advances</i>. (83.5% NEURAL; 6.5% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41790566" target="_blank">Methylparaben Induces Gut Microbiota-Dependent Neurotoxicity in Zebrafish.</a></b> Wang J, Xue J, Lin Y, Meng H, Wang M, Zhang Q, Magnuson JT, Liu Y, Qiu W, <i>Environmental science &amp;amp; technology</i>. (38.0% NEURAL; 18.3% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41788877" target="_blank">Modulation of neurofluid fluctuation frequency by baseline carbon dioxide in awake humans: the role of the autonomic nervous system.</a></b> Zhong XZ, Chang C, Chen JJ, <i>Frontiers in physiology</i>. (83.3% NEURAL; 5.7% CARDIOVASCULAR/CARDIOPULMONARY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41788280" target="_blank">Blindfolded hypogravity adaptation differentially affects motor and cognitive systems.</a></b> Rock CG, Kim H, Dick JF, Chang YH, <i>Frontiers in psychology</i>. (61.1% NEURAL; 33.1% VISUAL/VESTIBULAR)<br />
<br />
<br />
<span style="font-size:16px"><b>*ORTHOPAEDICS (SPINE)*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41818243" target="_blank">Collagenesis orchestrates mechanoadaptive development and homeostasis of intervertebral discs.</a></b> He J, Huang S, Li Y, Wang Y, Yan P, Hu O, Lin P, Jin H, Zhu J, Zhang L, Liu Y, Qin Q, Guo Y, Zheng X, Xie Y, Chen L, Lan Y, Liu B, Liu P, Gan Y, <i>Cell reports</i>. (72.4% ORTHOPAEDICS/SPINE; 7.7% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41807045" target="_blank">Can the Stand-Alone Cervical Interfacet Fusion Achieve Spinal Stability? A Comprehensive Finite Element Analysis.</a></b> Ciriello L, Rotondi M, Sciarrone GJ, Villa T, <i>International journal of spine surgery</i>. (99.1% ORTHOPAEDICS/SPINE; 0.3% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41803603" target="_blank">Biomechanical assessment of vertebral fracture risk incorporating the effect of paraspinal muscles.</a></b> Zhao Y, Din RU, Dong J, Cheng X, Yang H, <i>Medical &amp;amp; biological engineering &amp;amp; computing</i>. (96.4% ORTHOPAEDICS/SPINE; 0.7% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41796303" target="_blank">Finite element analysis of the pedicle screw in lumbar transpedicular dynamic stabilization that penetrates the lateral cortex of the vertebral pedicle.</a></b> Zhao C, Zhang M, Li P, Luo L, Zhou Q, Liu L, <i>BMC musculoskeletal disorders</i>. (92.8% ORTHOPAEDICS/SPINE; 5.1% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41793525" target="_blank">Determining the optimal management of geriatric type II odontoid fractures: a comparative network meta-analysis.</a></b> Patel S, Nischal SA, Kale KM, Matsoukas S, Heller J, Jallo J, Harrop JS, Prasad SK, <i>Neurosurgical review</i>. (90.6% ORTHOPAEDICS/SPINE; 4.3% TRAUMA/IMPACT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41792815" target="_blank">A novel anterior occipitocervical fixation instrument improves stability and minimizes bone-implant stress: a comparative finite element analysis.</a></b> Xiong J, Xiao H, Xu P, Zheng J, Zhang X, Wang Y, Ji W, <i>Journal of orthopaedic surgery and research</i>. (95.3% ORTHOPAEDICS/SPINE; 1.7% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41793092" target="_blank">Development and Biomechanical Study of the Novel PRUNUS Plate-Screw System.</a></b> Xiao-Feng Z, Ning-Ning X, Xiang-Dong L, Xiang L, Zhi-Feng F, Bin Z, <i>Orthopaedic surgery</i>. (92.2% ORTHOPAEDICS/SPINE; 5.6% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41792841" target="_blank">Biomechanical evaluation of individual 3D-printed vertebrae.</a></b> Metzner F, Schleifenbaum S, Heyde CE, von der H&amp;ouml;h NH, <i>BMC biomedical engineering</i>. (93.6% ORTHOPAEDICS/SPINE; 1.6% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41810136" target="_blank">Novel 360&amp;deg; lumbar arthroplasty: Surgical technique and procedural details.</a></b> Ament JD, Petros J, Gardner C, Vokshoor A, <i>North American Spine Society journal</i>. (93.6% ORTHOPAEDICS/SPINE; 5.2% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41800527" target="_blank">Radiologic Insights: Diagnosing Lumbosacral Transitional Vertebrae. Systematic Review of the Literature.</a></b> Andrade-Andrade P, Acevedo-Gonz&amp;aacute;lez JC, <i>Pain practice : the official journal of World Institute of Pain</i>. (97.3% ORTHOPAEDICS/SPINE; 0.6% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41800071" target="_blank">Traditional pedicle screw versus cortical bone trajectory in the upper thoracic spine: A technical description and retrospective comparative review.</a></b> Coyle MJ, Bunting A, Tsai E, Stratton A, Phan P, Kingwell S, Brillinger J, Wai EK, <i>North American Spine Society journal</i>. (97.3% ORTHOPAEDICS/SPINE; 2.0% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41808510" target="_blank">Research progress on the biomechanical effects of lumbar spondylolysis on adjacent segment intervertebral discs and treatment strategies.</a></b> Gao Z, Ge Z, Lin D, Zhang B, <i>Zhongguo gu shang = China journal of orthopaedics and traumatology</i>. (98.5% ORTHOPAEDICS/SPINE; 0.4% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41808507" target="_blank">Finite element analysis of a novel self-locking oblique lumbar interbody fusion system applied to lumbar osteoporosis.</a></b> Chen W, Zheng C, Liu S, Wang S, Wang C, <i>Zhongguo gu shang = China journal of orthopaedics and traumatology</i>. (96.6% ORTHOPAEDICS/SPINE; 1.5% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41808498" target="_blank">Comparison of the efficacy of two unilateral percutaneous translaminar vertebral kyphoplasty procedures for the treatment of single-segment thoracolumbar osteoporotic vertebral compression fractures.</a></b> Yang F, Luo Y, Chen K, He R, <i>Zhongguo gu shang = China journal of orthopaedics and traumatology</i>. (97.1% ORTHOPAEDICS/SPINE; 2.0% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41808768" target="_blank">Impact of different paraspinal muscle mass on the prognosis of ACDF-a finite element analysis.</a></b> Cui H, Zhou M, Gong Y, Zhang H, Zhang T, Tan X, Bi X, Zhang M, Wang X, Jiang Z, Zhu R, <i>Frontiers in bioengineering and biotechnology</i>. (94.3% ORTHOPAEDICS/SPINE; 3.1% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41800339" target="_blank">Accuracy and safety of navigated pedicle screw insertion in cervical spine fractures.</a></b> Mirzamohammadi J, Austad TA, Stenset V, Biernat DI, Aarhus M, Helseth E, Linnerud H, <i>Frontiers in surgery</i>. (94.1% ORTHOPAEDICS/SPINE; 4.0% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41810393" target="_blank">Navigation-assisted C1-ring osteosynthesis for an unstable atlas fracture: a case report.</a></b> Richey BP, Lele R, Park M, Patel RD, Aleem IS, <i>Journal of spine surgery (Hong Kong)</i>. (90.2% ORTHOPAEDICS/SPINE; 7.8% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41810391" target="_blank">Neuronavigated placement of iliosacral screws in sacral fractures: an additional tool in the spine surgeon's arsenal.</a></b> Baucher G, Avinens V, Baron ML, Lemnos L, Roche PH, Troude L, <i>Journal of spine surgery (Hong Kong)</i>. (87.4% ORTHOPAEDICS/SPINE; 8.5% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41788354" target="_blank">Precision restoration of complex cervical instability and decompression for neurofibromatosis type I: a case report using patient-specific 3D-printed templates.</a></b> Ma Z, Zheng W, Wang N, Li R, Wen S, <i>Frontiers in surgery</i>. (96.9% ORTHOPAEDICS/SPINE; 2.0% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41815609" target="_blank">Prevalence of Fusion Between Adjacent Thoracic Spinous Processes in Adult Cadavers.</a></b> Sharma PN, Jethva K, Vaishnani H, Joshi M, Gohil P, Kulkarni MM, Gandotra AR, <i>Cureus</i>. (98.5% ORTHOPAEDICS/SPINE; 0.5% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41793716" target="_blank">Comparative efficacy and safety of ACAF, ACCF, and laminoplasty for multilevel cervical OPLL: A network meta-analysis of observational studies.</a></b> Wang W, Xiang CH, Li D, Wang XZ, Xu XH, <i>Journal of orthopaedic surgery (Hong Kong)</i>. (97.8% ORTHOPAEDICS/SPINE; 1.6% ORTHOPAEDICS/SURGERY)<br />
<br />
<br />
<span style="font-size:16px"><b>*ORTHOPAEDICS (SURGERY)*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41799868" target="_blank">Construct strength of a drilling trajectory angled proximally avoiding the posterior interosseous nerve in single incision distal biceps repair; a comparative cadaveric study.</a></b> Macken AA, Shirinskiy I, van der Gaast N, van der Poel WJ, Bleys RLAW, van Deurzen DFP, Caekebeke P, Eygendaal D, van den Bekerom MPJ, <i>JSES reviews, reports, and techniques</i>. (86.0% ORTHOPAEDICS/SURGERY; 8.4% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41811253" target="_blank">Femoral Neck System: A Review of the Literature.</a></b> Warren JR, Bejcek C, Branche K, Thuppal S, Dubin JR, Grote CW, <i>Journal of surgical orthopaedic advances</i>. (85.5% ORTHOPAEDICS/SURGERY; 5.5% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41798252" target="_blank">Clinical decision algorithm for managing Hoffa's fat pad: Preservation, partial resection, or complete excision?</a></b> Rivarola H, Meninato M, Ramos P, Endara Urresta F, Pe&amp;ntilde;aherrera-Carrillo C, Barros Castro A, <i>Journal of clinical orthopaedics and trauma</i>. (41.3% ORTHOPAEDICS/SURGERY; 30.8% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41808085" target="_blank">Biomechanical comparison of Mitchell versus Chevron osteotomy with the third generation minimally invasive screw fixation technique.</a></b> Kuan FC, Lin CH, Huang CM, Su WR, Chiang CH, Lo SP, <i>BMC musculoskeletal disorders</i>. (88.3% ORTHOPAEDICS/SURGERY; 6.9% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41802130" target="_blank">The Effect of Femoral Component Flexion in Total Knee Arthroplasty.</a></b> Wood MJ, Armitage JA, Hasan YO, <i>JBJS reviews</i>. (62.4% ORTHOPAEDICS/SURGERY; 21.6% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41796970" target="_blank">Biomechanical Properties of a Bone Plug Versus Soft Tissue Allograft for Medial Meniscus Root Fixation and the Effect of Peripheral Stabilization.</a></b> Pace JL, Carter TR, Nakla A, Chung MS, Kwak D, Baek G, Lew R, Beyer RS, Brimmo O, McGarry MH, Hsu J, Lee TQ, <i>The American journal of sports medicine</i>. (43.6% ORTHOPAEDICS/SURGERY; 27.9% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41798102" target="_blank">The Effect of Greater Tuberosity Decortication (Biogrooves) on Rotator Cuff Fixation: A Biomechanical Study.</a></b> Calibo T, Perleberg T, Hollenbeck JFM, DeFoor M, Dickinson N, Castro R, Tashman S, Dooney T, Herrington M, Millett PJ, Provencher MT, <i>Orthopaedic journal of sports medicine</i>. (79.3% ORTHOPAEDICS/SURGERY; 11.1% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41792819" target="_blank">Comparative biomechanical analysis of hinge fracture risk between medial open-wedge high tibial osteotomy and distal tuberosity osteotomy: a porcine tibia study.</a></b> Kakiage H, Nibe Y, Takahashi T, Takeshita K, Chikuda H, <i>Journal of orthopaedic surgery and research</i>. (62.2% ORTHOPAEDICS/SURGERY; 23.1% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41790199" target="_blank">Operative treatment of ankle fractures-what about biomechanics? : From angle stability to nail fixation.</a></b> F&amp;ouml;rch S, Bonhorst P, Mayr E, <i>Unfallchirurgie (Heidelberg, Germany)</i>. (51.5% ORTHOPAEDICS/SURGERY; 30.7% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41800468" target="_blank">Intramedullary nailing with absorbable antibiotic-eluting ceramic for fracture-related infection prophylaxis in high-risk open fractures: a case series and technique.</a></b> Sandilands SM, Daji AV, <i>OTA international : the open access journal of orthopaedic trauma</i>. (81.1% ORTHOPAEDICS/SURGERY; 6.8% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41798099" target="_blank">3D-Printed Patient-Specific Guides Reduce Femoral Tunnel Convergence in Anatomic Knee Multiligament Reconstruction: Controlled Laboratory Study.</a></b> Cirdi YU, Serteser B, Mavi A, Ergun S, Akgun U, <i>Orthopaedic journal of sports medicine</i>. (77.6% ORTHOPAEDICS/SURGERY; 10.2% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41815651" target="_blank">Navigation-Assisted Percutaneous Fixation of an Anterior Column and Posterior Hemitransverse Fracture in an Elderly Patient: A Case Report.</a></b> Rohl M, Manes TJ, Rodriguez N, Monahan K, Scheschuk JP, <i>Journal of orthopaedic case reports</i>. (85.3% ORTHOPAEDICS/SURGERY; 6.2% ORTHOPAEDICS/SPINE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41815413" target="_blank">Finite element biomechanics of novel intramedullary nails with varying diameters for intertrochanteric femoral fractures with lateral wall injury.</a></b> Wu E, Tang Z, Wang L, Liu H, Peng Z, Liang Y, <i>Frontiers in bioengineering and biotechnology</i>. (55.9% ORTHOPAEDICS/SURGERY; 15.3% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41799613" target="_blank">Biomechanical Analysis Evaluating an Augmentation Technique for Supraspinatus Double-Row Repair With Additional Double-Row Anterior Fixation: &quot;The Double-Double-Row Repair&quot;.</a></b> Teel JE, Hollenbeck JFM, Castro RR, Buchalter WH, Kanakamedala AC, Adriani M, Ganokroj P, Dickinson NJ, Jaber A, Millett PJ, Provencher MT, <i>Orthopaedic journal of sports medicine</i>. (90.7% ORTHOPAEDICS/SURGERY; 3.6% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41798563" target="_blank">Stability at a Cost: Evaluating Postoperative Complications in Bioabsorbable vs. Metallic Syndesmotic Fixation: A Systematic Review.</a></b> Suarez A, Liu L, Checkley T, Sakaria S, Rinaldi A, Palacios C, Alepuz A, Ngatuvai M, Schwartz G, <i>Cureus</i>. (83.9% ORTHOPAEDICS/SURGERY; 8.2% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41804130" target="_blank">ADVANTAGES OF COMPUTER-NAVIGATED KNEE REPLACEMENT: IMPLICATIONS FOR BIOMECHANICS, PAIN MANAGEMENT, AND RECOVERY.</a></b> Tchumburidze G, Tchanturia L, Gogokhia I, <i>Georgian medical news</i>. (38.3% PROSTHETICS/ORTHOTICS; 32.3% JOINT/CARTILAGE)<br />
<br />
<br />
<span style="font-size:16px"><b>*PROSTHETICS/ORTHOTICS*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41807005" target="_blank">Assessment of pain and functional outcomes after lower limb amputation: a scoping review.</a></b> Kim JM, Balthazaar SJT, Alsayed K, Nightingale T, Falla D, Yeo SH, Ding Z, <i>BMJ open</i>. (65.1% PROSTHETICS/ORTHOTICS; 19.3% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41790821" target="_blank">Simulation-Driven Exoskeleton Control: Predicting Soft Pneumatic Gel Muscle Actuator Assistance to Reduce Metabolic Cost at Different Walking Speeds.</a></b> Renganathan G, Luis I, Gutierrez-Farewik EM, Tada M, Kurita Y, <i>IEEE transactions on neural systems and rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society</i>. (38.9% PROSTHETICS/ORTHOTICS; 24.8% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41800333" target="_blank">State of the art of lower limb prosthesis simulators: A literature review.</a></b> Neelen I, van der Windt B, Major MJ, Smit G, <i>Wearable technologies</i>. (99.0% PROSTHETICS/ORTHOTICS; 0.2% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41815702" target="_blank">Managing Hip Arthritis in an Above-Knee Amputee: A Case Report of Total Hip Arthroplasty with Surgical Technique and Rehabilitation Considerations.</a></b> Patra SK, Patro DR, Unais TT, Sarma EA, Jaswanth AVSS, Jain M, <i>Journal of orthopaedic case reports</i>. (33.6% PROSTHETICS/ORTHOTICS; 25.2% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41795352" target="_blank">Mechanics of struts in the Taylor Spatial Frame.</a></b> Zamani AR, Zenios M, Oyadiji SO, <i>Injury</i>. (61.5% PROSTHETICS/ORTHOTICS; 6.9% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41793134" target="_blank">Three-spring flexion-resistance module for knee orthoses design and evaluation.</a></b> Hern&amp;aacute;ndez-Hern&amp;aacute;ndez V, Susarrey-Huerta O, Silva-Rivera US, Wong-Angel WD, Quintana-Hern&amp;aacute;ndez O, <i>Science progress</i>. (97.2% PROSTHETICS/ORTHOTICS; 0.6% JOINT/CARTILAGE)<br />
<br />
<br />
<span style="font-size:16px"><b>*REHABILITATION*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41814684" target="_blank">Evaluating the construct validity of five concern for falling outcome measures and the concern for falling framework in people with lower limb loss using the International Classification of Functioning, Disability and Health framework.</a></b> Nugent K, Ward L, Viana R, Payne MW, Unger J, Hunter SW, <i>Disability and rehabilitation</i>. (34.4% REHABILITATION; 19.0% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41813711" target="_blank">Intrinsic capacity and stroke risk in a multiple cohort study.</a></b> Li Y, Chen Y, Chen Y, Pan Y, Chen Y, Huang L, Jiang W, <i>Nature communications</i>. (24.5% REHABILITATION; 15.1% CARDIOVASCULAR/CARDIOPULMONARY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41811930" target="_blank">Virtual Reality and Body Weight-Supported Treadmill Training in Gait Rehabilitation for Parkinson's Disease: A Systematic Review.</a></b> Battaglion GGS, Boni FDS, Zhang K, Rosa GHM, de Ara&amp;uacute;jo JE, <i>American journal of physical medicine &amp;amp; rehabilitation</i>. (88.9% REHABILITATION; 6.9% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41796258" target="_blank">Robotic assisted versus conventional training for physical rehabilitation care after burns: a systematic review and meta-analysis based on high-quality randomized controlled trials.</a></b> Wang G, Tang Q, Zhong M, Lan J, Yao S, Hao Y, Wang Y, Duan Q, Zhao Y, <i>Journal of robotic surgery</i>. (71.2% REHABILITATION; 27.4% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41794766" target="_blank">Improving interlimb coordination and paretic limb use after stroke using a novel robotic split-crank pedaling device: a cross-sectional study.</a></b> Ruopp TS, Schmit BD, Schindler-Ivens S, <i>Journal of neuroengineering and rehabilitation</i>. (70.7% REHABILITATION; 22.4% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41793229" target="_blank">Machine learning applications for anterior cruciate ligament injury prediction and rehabilitation in sports: A scoping review with evidence synthesis.</a></b> Kumar R, Singh V, Reddy O, <i>Knee surgery, sports traumatology, arthroscopy : official journal of the ESSKA</i>. (38.6% REHABILITATION; 34.3% TENDON/LIGAMENT)<br />
<br />
<br />
<span style="font-size:16px"><b>*ROBOTICS*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41818026" target="_blank">GALC: Guided Amplified Learning With Lipschitz Constraint for Robust Trajectory Generation.</a></b> Lin Z, Chen Z, Zhu G, Chen J, Li J, <i>IEEE transactions on cybernetics</i>. (69.7% ROBOTICS; 15.4% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41813645" target="_blank">A parallel-legged insect-scale robot based on actuation-structure integrated origami mechanism.</a></b> Zhu Q, Jiang T, Luo Z, Zhu Y, Huang G, <i>Microsystems &amp;amp; nanoengineering</i>. (99.3% ROBOTICS; 0.2% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41790937" target="_blank">Agile legged locomotion in reconfigurable modular robots.</a></b> Yu C, Matthews D, Wang J, Gu J, Blackiston D, Rubenstein M, Kriegman S, <i>Proceedings of the National Academy of Sciences of the United States of America</i>. (99.4% ROBOTICS; 0.2% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41808673" target="_blank">Bust Stimulation for Sustained Locomotion Control and Autonomous Navigation of Terrestrial Cyborg Beetles.</a></b> Le HN, Nguyen HD, Fitzgerald L, McAree PR, Sato H, Vo-Doan TT, <i>Cyborg and bionic systems (Washington, D.C.)</i>. (96.6% ROBOTICS; 0.9% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41803221" target="_blank">Biomimetic climbing robot design inspired by geckos and cats for rough wall applications.</a></b> Jodah MK, Rashid MT, Abdulaali AH, Alhasnawi BN, Do&#269;ekalov&amp;aacute; A, Bure&#353; V, <i>Scientific reports</i>. (99.3% ROBOTICS; 0.2% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41789151" target="_blank">Magnetically controlled multimodal motion for environmentally adaptive soft millirobots with transformable wheel-leg morphology.</a></b> Zhong S, Nie R, Zheng Z, Hou Y, Shi Q, Huang Q, Fukuda T, Wang H, <i>Innovation (Cambridge (Mass.))</i>. (99.2% ROBOTICS; 0.2% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41789150" target="_blank">Mechanical intelligence for artificial wings: A philosophy for multifold high-degree morphing with its mechanisms analogous to biology.</a></b> Luo B, Wei Li, <i>Innovation (Cambridge (Mass.))</i>. (44.6% COMPARATIVE; 36.3% ROBOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41789159" target="_blank">Discovery of skill-switching criteria for learning agile quadruped locomotion.</a></b> Yu W, Acero F, Atanassov V, Yang C, Havoutis I, Kanoulas D, Li Z, <i>Frontiers in robotics and AI</i>. (42.6% ROBOTICS; 34.1% MODELING)<br />
<br />
<br />
<span style="font-size:16px"><b>*SPORT/EXERCISE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41816934" target="_blank">Examining External Load Variability in a Cadet Population: Impact on Vertical Jump Performance.</a></b> Beach TJ, Fraley AL, Sole CJ, Leone GE, Waddy DC, Sacko RS, <i>Military medicine</i>. (96.9% SPORT/EXERCISE; 0.8% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41811400" target="_blank">Pre-landing quadriceps vibration improves single-leg landing mechanics under fresh conditions but fails after combined cognitive-physical fatigue.</a></b> Li F, Sun D, Song Y, Cen X, Chen D, Li W, Xiang L, Gao Z, Jemni M, Gu Y, <i>Physiology international</i>. (90.1% SPORT/EXERCISE; 2.5% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41811348" target="_blank">Technical Note on Pickup Acceleration Signal Processing.</a></b> Pryer ME, Cronin J, Neville J, Korfist C, Uthoff A, <i>Journal of strength and conditioning research</i>. (79.2% SPORT/EXERCISE; 17.9% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41804856" target="_blank">Impact of muscular fatigue and sex on supraspinatus occupation ratio during bench press in competitive powerlifters.</a></b> Motlagh JG, Lipps DB, <i>Journal of sports sciences</i>. (70.2% SPORT/EXERCISE; 16.4% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41803213" target="_blank">Effects oF compression legwear on knee biomechanics and inter-joint coordination during depth jumps: a randomized cross-over study.</a></b> Liu L, Shi QQ, Yick KL, Li CH, Huang RF, Mo SW, <i>Scientific reports</i>. (93.8% SPORT/EXERCISE; 1.7% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41794818" target="_blank">The effect of mixed fatigue on knee biomechanics and muscle activation during sidestep cutting in elite soccer players.</a></b> Chen K, Sun D, Chen D, Xuan B, Wang D, Song Y, Cen X, Jemni M, Fekete G, Gu Y, <i>BMC sports science, medicine &amp;amp; rehabilitation</i>. (96.5% SPORT/EXERCISE; 0.9% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41787982" target="_blank">Biomechanical performance predictors of the bobsleigh push phase.</a></b> Zedler M, Alt T, Potthast W, Braunstein B, Goldmann JP, <i>Journal of sports sciences</i>. (98.7% SPORT/EXERCISE; 0.3% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41787869" target="_blank">Optimizing exercise interventions for motor skills enhancement in attention deficit hyperactivity disorder: Evidence from meta-analysis.</a></b> Zhang Y, Che X, Dong Z, Shen J, Tao Y, Cui B, Zhu F, <i>Clinical rehabilitation</i>. (48.5% SPORT/EXERCISE; 37.1% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41785423" target="_blank">The Impact of Verbal Instruction on Countermovement Jump Testing in Division I Volleyball Athletes.</a></b> Young TL, Haynes HK, Klubertanz MR, Patton MG, Mercer ZJ, Bruni KM, Graybeal AJ, Donahue PT, <i>Journal of strength and conditioning research</i>. (99.0% SPORT/EXERCISE; 0.2% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41812415" target="_blank">Knee and hip joint dynamics differ between sprinting and Nordic hamstring exercises.</a></b> Steudel K, Haralabidis N, Gurchiek R, Hicks J, Delp S, <i>Journal of biomechanics</i>. (97.8% SPORT/EXERCISE; 0.7% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41815352" target="_blank">Wesam Al Attar singularity evaluation-infinity: a predictive simulation framework for motor intent collapse in athletes.</a></b> Al Attar WSA, <i>Frontiers in sports and active living</i>. (77.9% SPORT/EXERCISE; 7.8% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41810460" target="_blank">Laser tag training reduces knee abduction moments and improves performance during change-of-direction movements.</a></b> Mohr M, De Santis F, <i>Frontiers in sports and active living</i>. (86.4% SPORT/EXERCISE; 5.7% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41810458" target="_blank">Biomechanical differences between novice and experienced runners: a systematic review.</a></b> Shen H, Jin Z, Ma Z, Wang H, <i>Frontiers in sports and active living</i>. (89.5% SPORT/EXERCISE; 8.5% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41788598" target="_blank">The Role of Shoulder Posture in Pitching Mechanics in High School Baseball Pitchers.</a></b> Weng YH, Huang TS, Lin JJ, <i>Journal of athletic training</i>. (95.3% SPORT/EXERCISE; 1.5% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41806411" target="_blank">Modes of centripetal ground reaction force application in curved sprinting on an athletic track in male athletes.</a></b> Hirono Y, Fujii N, <i>Journal of biomechanics</i>. (97.6% SPORT/EXERCISE; 1.2% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41797967" target="_blank">Sport-Specific Neuromuscular Profiles in Male Youth Swimmers and Sailors: A Comparative Analysis.</a></b> Chainok P, Matjiur R, Thongchai P, Zacca R, Lin JZ, <i>International journal of exercise science</i>. (98.4% SPORT/EXERCISE; 0.5% MUSCLE)<br />
<br />
<br />
<span style="font-size:16px"><b>*TENDON/LIGAMENT*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41809065" target="_blank">Biomechanical analysis of single-row anchor, double-row anchor, and single-row knotless tape repair techniques for complete subscapularis tears.</a></b> Waltensp&amp;uuml;l M, Kiss S, Bouaicha S, Ernstbrunner L, Borbas P, Wieser K, <i>JSES reviews, reports, and techniques</i>. (61.8% TENDON/LIGAMENT; 34.1% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41815865" target="_blank">A sequential defense-nourishment strategy enabled by thermosensitive core-shell microneedles for synergistic tendon repair.</a></b> Fu M, Li J, Jiang Y, Shao Y, Wu D, Zhong S, Huang Z, Chen C, Guo J, Xie D, Zeng C, <i>Materials today. Bio</i>. (76.6% TENDON/LIGAMENT; 20.0% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41817046" target="_blank">An Exploratory Assessment of Associations Between Serum Estrogen to Progesterone Ratio and Anterior Cruciate Ligament Size, Biomechanics, and T2* Relaxation Time in the Porcine Model.</a></b> Thompson J, Howe D, Griffith E, Conley A, Shultz S, Schnabel L, Spang J, Fisher M, <i>Journal of biomechanical engineering</i>. (95.3% TENDON/LIGAMENT; 0.7% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41808471" target="_blank">The Rectus Femoris Tendon as a Graft for Combined ACL and Anterolateral Reconstruction: A Biomechanical Evaluation.</a></b> Mestriner MB, Reynolds A, Barrosso BG, R&amp;ecirc;go M, Cury RPL, Amis AA, <i>The American journal of sports medicine</i>. (86.7% TENDON/LIGAMENT; 9.9% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41803434" target="_blank">Utilization of machine learning to identify lower extremity biomechanical predictors of rupture in a validated cadaveric model of ACL injury.</a></b> Khorrami P, Braimoh T, Reis DA, Bates NA, Schilaty ND, Templeton JM, <i>Scientific reports</i>. (79.7% TENDON/LIGAMENT; 4.5% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41796975" target="_blank">Biomechanical Roles of the Popliteomeniscal Fascicles and Meniscofibular and Meniscotibial Ligaments in Stabilizing the Lateral Meniscus Posterior Horn: A Cadaveric Study.</a></b> Horita K, Kamiya T, Hamaoka K, Shiwaku K, Mori Y, Ikeda Y, Okada Y, Suzuki D, Emori M, Fujie H, Teramoto A, <i>The American journal of sports medicine</i>. (80.0% TENDON/LIGAMENT; 8.2% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41800224" target="_blank">Biomechanical Assessment of Syndesmotic and Deltoid Ligament Strain in Pronation-External Rotation Type Ankle Injuries by Musculoskeletal Computer Simulation.</a></b> Saatvedt O, Shayestehpour MA, Bjelland &amp;Oslash;, Gregersen MG, Furunes H, Molund M, <i>Foot &amp;amp; ankle orthopaedics</i>. (67.7% TENDON/LIGAMENT; 12.8% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41785459" target="_blank">Mechanically Preconditioned Biomimetic Gradient Scaffold for Tendon-to-Bone Regeneration in a Rabbit Rotator Cuff Tear Model.</a></b> Chen Y, Li Y, Aili D, Li J, Zhang C, Zhao C, Liu Q, <i>The American journal of sports medicine</i>. (62.6% TENDON/LIGAMENT; 32.1% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41810457" target="_blank">Anticipation and sequential demands influence on-field change-of-direction kinematics related to ACL injury risk.</a></b> K&amp;uuml;hne M, Sanin C, Mohr M, <i>Frontiers in sports and active living</i>. (58.7% TENDON/LIGAMENT; 30.2% SPORT/EXERCISE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41798506" target="_blank">Morphometric and Histological Insights to Aid Graft Selection for Anterior Cruciate Ligament Reconstruction.</a></b> Saini R, Sehgal R, Ganapathy A, Basu Ray S, <i>Cureus</i>. (93.1% TENDON/LIGAMENT; 3.1% ORTHOPAEDICS/SURGERY)<br />
<br />
<br />
<span style="font-size:16px"><b>*TISSUE/BIOMATERIAL*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41818324" target="_blank">Prevascularized Bone Marrow-Derived Mesenchymal Stem Cell Sheets Promote Tendon-Bone Integration in Rotator Cuff Repair.</a></b> Li Y, Chen Y, Zhu Y, Li D, Liao L, Li W, Liu Q, <i>The Journal of bone and joint surgery. American volume</i>. (51.7% TISSUE/BIOMATERIAL; 32.8% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41817957" target="_blank">A Novel Knitted Silk Mesh Orchestrates Macrophage M2 Polarization and Angiogenesis for Functional Pelvic Floor Reconstruction.</a></b> Shen Z, Mao X, Li Y, Wu X, Wang S, Zhang Y, Sun X, Wang J, <i>ACS biomaterials science &amp;amp; engineering</i>. (94.3% TISSUE/BIOMATERIAL; 2.7% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41816925" target="_blank">A Photocurable Conductive Hydrogel for Force Sensing of Cross-Type Muscle Tissue.</a></b> Zhou Z, Chen H, Yang J, Jin H, Xu F, Jiang Y, Jiang A, Huang Y, Huang J, He Y, Sun D, Chen S, <i>ACS applied materials &amp;amp; interfaces</i>. (38.1% TISSUE/BIOMATERIAL; 30.6% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41800142" target="_blank">Nanopatterned Cell Sheet Assembly of Biomimetic Cardiac Laminae for Modeling Structure-Function Relationships.</a></b> Jiao A, Macadangdang J, Kim J, Moerk CT, Palpant NJ, Mengsteab PY, Park HC, Murry CE, Kim DH, <i>Biomaterials research</i>. (64.5% TISSUE/BIOMATERIAL; 18.0% CARDIOVASCULAR/CARDIOPULMONARY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41797979" target="_blank">3D bioprinted multifunctional GelMA/TMP scaffold integrated with neural stem cell-derived extracellular vesicles and neural progenitor cells for spinal cord injury repair.</a></b> Liu Y, Kim G, Kim JY, Park JM, Song DH, Lee JK, Park SY, Han I, Han DK, <i>Journal of tissue engineering</i>. (76.1% TISSUE/BIOMATERIAL; 10.9% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41804228" target="_blank">Fiber-Reinforced Composites for Vaginal Tissue Engineering Applications.</a></b> Kolluru SS, Hamdaoui A, Mascot AM, Sutcliffe SS, Lowder JL, Oyen ML, Zambuto SG, <i>Journal of biomedical materials research. Part A</i>. (98.1% TISSUE/BIOMATERIAL; 0.7% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41795914" target="_blank">Testing the Biomechanical Protection by Sacral Border Dressings in a Laboratory-Based Model.</a></b> Gibson DJ, Sherry JG, <i>International wound journal</i>. (52.2% TISSUE/BIOMATERIAL; 8.7% PROSTHETICS/ORTHOTICS)<br />
<br />
<br />
<span style="font-size:16px"><b>*TRAUMA/IMPACT*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41786393" target="_blank">Mimickers of Concussion Presentations.</a></b> Alessi-LaRosa S, <i>Clinics in sports medicine</i>. (97.4% TRAUMA/IMPACT; 0.5% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41786391" target="_blank">Biomechanical Considerations of Concussion.</a></b> Nyaboga AA, Choe M, <i>Clinics in sports medicine</i>. (98.9% TRAUMA/IMPACT; 0.2% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41806401" target="_blank">BIOMECHANICAL RESPONSE OF HUMAN SKULL TO IMPACT BY THREE-DIMENSIONAL FINITE ELEMENT ANALYSIS.</a></b> Tetala ALRK, Aasish GC, B D, Devaraj AK, <i>Biomedical physics &amp;amp; engineering express</i>. (99.2% TRAUMA/IMPACT; 0.3% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41796024" target="_blank">Innovative Development and Future Prospects in Forensic Pathology.</a></b> Liu NG, <i>Fa yi xue za zhi</i>. (25.4% TRAUMA/IMPACT; 16.8% METHODS)<br />
<br />
<br />
<span style="font-size:16px"><b>*VETERINARY/AGRICULTURAL*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41812685" target="_blank">Biomechanical Analysis of Orthogonal Plating and Plate-Rod Combination in a Canine Tibial Fracture Gap Model.</a></b> Muroi N, Garcia TC, Dycus DL, Hayashi K, Kim SY, Chou PY, <i>Veterinary and comparative orthopaedics and traumatology : V.C.O.T</i>. (99.2% VETERINARY/AGRICULTURAL; 0.3% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41807983" target="_blank">Interfragmentary compression in a feline sacroiliac luxation model: biomechanical comparison of cannulated compression headless screws and cortical screws applied in positional or lag fashion.</a></b> Wachsmuth L, Wieser J, Thorw&amp;auml;chter C, Zablotski Y, Lorenz ND, Lauer S, Kornmayer M, <i>BMC veterinary research</i>. (98.3% VETERINARY/AGRICULTURAL; 0.3% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41803644" target="_blank">The use of remote monitoring technologies for early detection of lameness in beef bulls during the breeding season.</a></b> Camargo VA, Pajor EA, Pruvot M, Bayat S, Pearson JM, <i>Journal of animal science</i>. (99.1% VETERINARY/AGRICULTURAL; 0.5% COMPARATIVE)<br />
<br />
<br />
<span style="font-size:16px"><b>*VISUAL/VESTIBULAR*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41811402" target="_blank">Tomographic and Biomechanical Stability of the Non-operated Eye in Asymmetric Keratoconus with Unilateral Intracorneal Ring Segment Implantation.</a></b> Ambr&amp;oacute;sio JA, Brissos J, Tard&amp;atilde;o GC, Neto A, Esporcatte L, Ambr&amp;oacute;sio R, <i>Ophthalmology and therapy</i>. (90.7% VISUAL/VESTIBULAR; 6.0% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41806088" target="_blank">Reduced order modelling of air-puff test for corneal material characterisation.</a></b> Maklad OM, Hao M, <i>Journal of microscopy</i>. (65.0% VISUAL/VESTIBULAR; 20.8% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41803316" target="_blank">Axes of self-motion and object motion shape how we perceive world-relative motion.</a></b> Guo H, Allison RS, <i>Scientific reports</i>. (85.8% VISUAL/VESTIBULAR; 4.0% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41801548" target="_blank">Corneal biomechanics alterations and increased risk for corneal ectasia in Turner syndrome.</a></b> Roszkowska AM, Mancini M, Gargiulo L, Pepe G, Gargano R, Aversa T, Wasniewska M, <i>International ophthalmology</i>. (93.4% VISUAL/VESTIBULAR; 5.1% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41787290" target="_blank">Evaluation of stability and visual quality in Chinese myopic eyes 2 years following FS-LASIK combined with prophylactic corneal crosslinking.</a></b> Li J, Huang Y, Xu Y, Wang Z, Song Y, Zhang F, <i>BMC ophthalmology</i>. (95.9% VISUAL/VESTIBULAR; 2.1% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41800842" target="_blank">Unraveling the Heritability of Ocular Rigidity and Myopia-Related Traits: A Siblings-Based Study.</a></b> Benoit J, Adel Y, Lam K, Medina-Cornejo J, Sayah DN, <i>Investigative ophthalmology &amp;amp; visual science</i>. (97.1% VISUAL/VESTIBULAR; 1.8% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41793362" target="_blank">Multimodal Predictive Modeling for Visual Quality Recovery After Keratorefractive Lenticule Extraction.</a></b> Wan Q, Chen L, Tang J, Deng YP, Ma K, <i>Journal of refractive surgery (Thorofare, N.J. : 1995)</i>. (95.5% VISUAL/VESTIBULAR; 1.8% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41791203" target="_blank">Titanium mesh versus bioresorbable plates in orbital floor repair: Implications for blunt&#8209;impact biomechanics.</a></b> Hwang M, Lee SA, Lee CH, Park JS, Jo D, Kim JH, Yi CC, <i>Journal of plastic, reconstructive &amp;amp; aesthetic surgery : JPRAS</i>. (43.0% VISUAL/VESTIBULAR; 25.0% DENTAL/ORAL/FACIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41805096" target="_blank">In Vivo Biomechanical Characteristics of Human Corneas With Phase-Decorrelation OCT.</a></b> Blackburn BJ, Hammoud B, Asroui L, Tarib I, Susanna B, Jenkins MW, Randleman JB, Dupps WJ, Rollins AM, <i>Investigative ophthalmology &amp;amp; visual science</i>. (80.0% VISUAL/VESTIBULAR; 11.6% TISSUE/BIOMATERIAL)<br />
<br />
<br />
<span style="font-size:16px"><b>*PICK OF THE WEEK*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41791264" target="_blank">Spatiotemporal mapping of plantar shear forces during human walking using a flexible thin-film sensor.</a></b> Nishizawa K, Ogihara N, <i>Journal of biomechanics</i>. (40.6% HAND/FINGER/FOOT/TOE; 36.7% GAIT/LOCOMOTION)&#8203;&#8203;]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/literature-update">Literature Update</category>
			<dc:creator>Jessica Murawski</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/literature-update/49377-literature-update-mar-06-2026-mar-12-2026</guid>
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			<title>What scientists can learn from performers (and a stand-up comic)</title>
			<link>https://biomch-l.isbweb.org/forum/isb-forums/isb-student-channel/49376-what-scientists-can-learn-from-performers-and-a-stand-up-comic</link>
			<pubDate>Thu, 12 Mar 2026 12:38:29 GMT</pubDate>
			<description>Dear students, 
 
When conference season approaches, many of us are polishing our slides, rehearsing our timing, and preparing to step onto a stage. ...</description>
			<content:encoded><![CDATA[<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Dear students,</span></span><br />
<br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">When conference season approaches, many of us are polishing our slides, rehearsing our timing, and preparing to step onto a stage. </span></span><br />
<br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">And let&#8217;s be honest, we have all experienced this.</span></span><br />
<br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">The final talk of the day. The lights are low. The audience is tired. Phones slowly appear. Someone checks the time. The speaker apologizes for standing between everyone and the networking drinks.</span></span><br />
<br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Now imagine the same setting at a concert. Lights low. Final act of the day. The performer steps on stage. The room comes alive.</span></span><br />
<br />
<b><span style="font-family:&amp;amp"><span style="font-family:&amp;amp">What makes the difference?</span></span></b><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">In a recent Nature Careers column, John Tregoning explores how scientists can learn from comedians, musicians and actors to better engage audiences. His message is simple: scientific talks are performances.</span></span><span style="font-family:&amp;amp"><span style="font-family:&amp;amp"> And perhaps the most convincing ilustration comes from a scientist who stepped into the world of stand-up comedy.</span></span><br />
<br />
<u><i><span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Science is not just information. It Is performance.</span></span></i></u><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Tregoning argues that talks often fall flat not because the science is weak, but because delivery is. Conference presentations do more than sharing data. They:</span></span><ul><li><span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Advertise your lab</span></span></li>
<li><span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Attract collaborators, students, and future team members</span></span></li>
<li><span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Spark cross-disciplinary ideas</span></span></li>
<li><span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Shape how your work is remembered</span></span></li>
</ul><span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Performers understand something scientists sometimes overlook: it is far easier to lose an audience than to win them back.</span></span><span style="font-family:&amp;amp"><span style="font-family:&amp;amp"> That means:</span></span><ul><li><span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Own the stage</span></span></li>
<li><span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Avoid hiding behind the lectern</span></span></li>
<li><span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Vary your tone</span></span></li>
<li><span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Think about the narrative flow of your talk</span></span></li>
<li><span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Close with something that sticks</span></span></li>
</ul><span style="font-family:&amp;amp"><span style="font-family:&amp;amp">But how do you actually become that kind of speaker?</span></span><br />
<br />
<br />
<u><i><span style="font-family:&amp;amp"><span style="font-family:&amp;amp">From stage paralysis to stand-up comedy</span></span></i></u><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Avraneel Paul describes a moment many researchers know well: standing in front of an audience, frozen, unable to find the next words. Instead of retreating, he did something radical. He signed up for an open mic night at a stand-up comedy club.</span></span><span style="font-family:&amp;amp"><span style="font-family:&amp;amp"> Not because he wanted to become a comedian, but because he admired their confidence and stage control.</span></span><br />
<br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">From that experience, he learned three things that align remarkably well with Tregoning&#8217;s advice:</span></span><ol class="decimal"><li><span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Study other performers: He attended more talks and watched skilled speakers carefully. Performers observe other performers. Scientists can do the same</span></span></li>
<li><span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Write a script: Even if some speakers improvise, preparation matters. A script helped transform &#8220;cluttered thoughts into spoken words&#8221; and reduced anxiety</span></span></li>
<li><span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Practice until it becomes muscle memory: Rehearsing pauses, gestures, and timing eventually made his delivery feel natural rather than forced</span></span></li>
</ol><br />
<u><i><span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Tell the story, not just the data</span></span></i></u><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">One of the most powerful shifts Paul describes is this: he stopped &#8220;merely presenting results&#8221; and began viewing his research through a storyteller&#8217;s lens. Tregoning makes a similar point when comparing talks to a band&#8217;s set list. You cannot play ten data-heavy slides in a row and expect sustained engagement. You need variation, pacing, tension, and resolution.<br />
<br />
People remember narratives. They rarely remember slide 27.</span></span><br />
<br />
<br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp"><u><i>Timing, presence, and dialogue</i></u><br />
Another shared lesson: timing.</span></span><br />
<br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Running over time is one of the fastest ways to lose an audience. Comedian Al Murray&#8217;s advice to simply &#8220;slow down&#8221; applies equally to complex scientific explanations. And perhaps most importantly, performance is dialogue.</span></span><span style="font-family:&amp;amp"><span style="font-family:&amp;amp"> Singer-songwriter Frank Turner describes being on stage as communication, not monologue. Even in silence, the audience is part of the exchange. Paul experienced this transformation directly. When he began focusing on what audiences would take away, questions became more thoughtful, engagement increased, and talks became energizing rather than draining.<br />
<br />
If you are excited about everything, the audience will struggle to know what truly matters. Strategic emphasis is powerful.</span></span><br />
<br />
<br />
<u><i><span style="font-family:&amp;amp"><span style="font-family:&amp;amp">A message for you:</span></span></i></u><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Your talk is often the first impression someone has of your work. It can attract collaborators, it can inspire students, and it can even shape the direction of future conversations.</span></span><br />
<br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">We invest years into our data. Communicating it effectively is not vanity, it is responsibility.</span></span><br />
<br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">If you&#8217;d like to explore the original articles:</span></span><ul><li><span style="font-family:&amp;amp"><span style="font-family:&amp;amp">John Tregoning, <i>Public-speaking tips from the experts: what scientists can learn from comics, musicians and actors</i>. <a href="https://www.nature.com/articles/d41586-025-04166-2" target="_blank">https://www.nature.com/articles/d41586-025-04166-2</a></span></span></li>
<li><span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Avraneel Paul, <i>I feared presenting my research to an audience&#8212;until I tried stand-up comedy</i>. <a href="https://www.science.org/content/article/i-feared-presenting-my-research-audience-until-i-tried-stand-comedy" target="_blank">https://www.science.org/content/arti...d-stand-comedy</a></span></span></li>
</ul><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">All the best,</span></span><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Elisa Romero Avila</span></span><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">ISB Student Representative 2025-2027</span></span><br />
&#8203;]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/isb-forums/isb-student-channel">ISB Student Channel</category>
			<dc:creator>Elisa Romero Avila</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/isb-forums/isb-student-channel/49376-what-scientists-can-learn-from-performers-and-a-stand-up-comic</guid>
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			<title><![CDATA[Potential candidates for PhD scholarships 2026 &#8211; Preliminary round &#8211; Lisbon (Portugal)]]></title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49374-potential-candidates-for-phd-scholarships-2026-%E2%80%93-preliminary-round-%E2%80%93-lisbon-portugal</link>
			<pubDate>Tue, 10 Mar 2026 09:59:08 GMT</pubDate>
			<description>Our research group, based at Instituto Superior Tecnico - Universidade de Lisboa (Portugal) is looking for new members interested in PhD projects...</description>
			<content:encoded><![CDATA[Our research group, based at Instituto Superior Tecnico - Universidade de Lisboa (Portugal) is looking for new members interested in PhD projects related to the <b>computational modelling of early onset scoliosis</b>, in collaboration with major Hospitals in Lisbon's area.<br />
The project can be tailored to your interests and potentially go from the development of new treatments to the implementation of constitutive models to simulate bone growth under scoliosis.<br />
<br />
This preliminary round intends to select potential applicants to the scholarship programme promoted by Fundacao para a Ciencia e Tecnologia (Portugal):<br />
<a href="https://www.fct.pt/en/concursos/concurso-bolsas-de-doutoramento-2026-linha-de-candidatura-geral" target="_blank">https://www.fct.pt/en/concursos/conc...didatura-geral</a><br />
<b>Please be aware that this preliminary round is by no means a job offer; no research funding is being offered at this stage</b>.&#8203;<br />
<br />
The potential candidates shall have completed a <u>master&#8217;s degree in Mechanical, Biomedical or Civil Engineering</u>, and be interested in proceeding to PhD studies <u>(candidates with a previous PhD degree will not be accepted).</u><br />
<b>The 2026 call of this programme closes by 31 March 2026.</b><br />
The rules of these programmes must be strictly followed by the candidate, for the application to be accepted by FCT.&#8203;<br />
<br />
<b>Interested candidates shall send a short CV (maximum of 2 pages), </b>including the academic degrees obtained so far and the track record of publications in peer reviewed international journals plus presentations in international conferences.<br />
Please send a motivation letter as well, including the contact of 2 academic references (maximum of 1 page).<br />
<b>These documents must be written in English and our internal deadline is 19 March 2026.</b><br />
<br />
Contact:<br />
Andre Castro &#8211; <a href="mailto:andre.castro@tecnico.ulisboa.pt">andre.castro@tecnico.ulisboa.pt</a>&#8203;]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions">Jobs and Positions</category>
			<dc:creator>Andre Castro</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49374-potential-candidates-for-phd-scholarships-2026-%E2%80%93-preliminary-round-%E2%80%93-lisbon-portugal</guid>
		</item>
		<item>
			<title>LITERATURE UPDATE Feb 27, 2026 - Mar 05, 2026</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/literature-update/49373-literature-update-feb-27-2026-mar-05-2026</link>
			<pubDate>Fri, 06 Mar 2026 15:21:04 GMT</pubDate>
			<description><![CDATA[LITERATURE UPDATE 
Feb 27, 2026 - Mar 05, 2026 
 
Literature search terms: biomech* &amp; locomot* 
 
Publications are classified by BiomchBERT...]]></description>
			<content:encoded><![CDATA[<span style="font-size:16px"><b>LITERATURE UPDATE</b></span><br />
Feb 27, 2026 - Mar 05, 2026<br />
<br />
Literature search terms: biomech* &amp; locomot*<br />
<br />
Publications are classified by <a href="https://www.ryan-alcantara.com/projects/p88_BiomchBERT/" target="_blank">BiomchBERT</a>, a neural network trained on past Biomch-L Literature Updates. BiomchBERT is managed by <a href="https://biomch-l.isbweb.org/member/35936-jessica-murawski" target="_blank">Jessica Murawski</a> and <a href="https://biomch-l.isbweb.org/member/35931-roberto-castro-jr" target="_blank">Roberto Castro Jr.</a>, Doctoral Students at The Pennsylvania State University. Each publication has a score (out of 100%) reflecting how confident BiomchBERT is that the publication belongs in a particular category (top 2 shown). If something doesn't look right, email us at <a href="mailto:jam1798@psu.edu">jam1798@psu.edu</a> / <a href="mailto:rpc5743@psu.edu">rpc5743@psu.edu</a>.<br />
<br />
Biomch-L LinkedIn: <a href="http://www.linkedin.com/in/biomch-l-06359638a" target="_blank">www.linkedin.com/in/biomch-l-06359638a</a>.<br />
&#8203;&#8203;<br />
<br />
<br />
<span style="font-size:16px"><b>*BONE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41781157" target="_blank">Bone properties and biomechanics in patients with psoriatic disease: a cross-sectional study with high-resolution peripheral quantitative CT (HRpQCT).</a></b> Piccinelli A, Bellinato F, Pollastri F, Fassio A, Benini C, Dartizio C, Gatti D, Rossini M, Viapiana O, Gisondi P, Giorgio F, Teoni M, Tugnolli M, Adami G, <i>RMD open</i>. (99.3% BONE; 0.1% JOINT/CARTILAGE)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41772266" target="_blank">Capturing the Multiscale Nature of Bone Behavior: Classical, Data-Driven and Hybrid Techniques.</a></b> Mohammadkhah M, Savari A, Klinge S, <i>Annals of biomedical engineering</i>. (65.0% BONE; 24.6% MODELING)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41769970" target="_blank">Assessment of Bone Regeneration in Rabbit Calvarial Defects Treated With Mineralized Collagen-Based Scaffolds Using In Vivo MicroCT and Three-Dimensional Rendering.</a></b> Kang Y, Shariati K, Cascavita CT, Chen W, Bedar M, Ren X, Xu S, Lee JC, <i>Current protocols</i>. (79.5% BONE; 13.3% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41756110" target="_blank">Bone Induction as a Function of Size and Chemical Composition of Calcium Phosphate Granules in Osteogrow-C Evaluated in Animal Models: A 1-Year Follow-Up.</a></b> Stokovic N, Ivanjko N, Milesevic M, Muzina K, Pecin M, Maticic D, Vukicevic S, <i>Biomaterials research</i>. (66.8% BONE; 25.0% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41769460" target="_blank">Biomechanical Fracture Thresholds of the Tibia and Fibula Under Axial and Multi-axial Loading: A Systematic Review.</a></b> Zain Ul Abidin M, Mumtaz M, Shetty S, Shehata Abdelmesih SR, Suliman MGH, Abdullah S, <i>Cureus</i>. (64.5% BONE; 18.1% TRAUMA/IMPACT)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41782633" target="_blank">Morphometric Study of the Nutrient Foramina in Dry Femoral Bones at Medical Campus: An Observational Study.</a></b> Shrestha A, Bhusal K, Mishra AK, Bhandari R, <i>JNMA; journal of the Nepal Medical Association</i>. (95.8% BONE; 1.4% EVOLUTION/ANTHROPOLOGY)<br />
<br />
<br />
<span style="font-size:16px"><b>*CARDIOVASCULAR/PULMONARY*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41784707" target="_blank">In vivo quantification of arterial active mechanics using deep learning-assisted pressure-area analysis.</a></b> Jiang Y, Cao Y, <i>Biomechanics and modeling in mechanobiology</i>. (93.5% CARDIOVASCULAR/CARDIOPULMONARY; 2.1% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41772267" target="_blank">Biomechanical Characterization of Porcine Lower Limb Arteries for Preclinical Evaluation of Peripheral Vascular Devices.</a></b> de Oliveira BB, Heinis F, Desyatova A, MacTaggart J, Kamenskiy A, <i>Annals of biomedical engineering</i>. (90.8% CARDIOVASCULAR/CARDIOPULMONARY; 5.7% TISSUE/BIOMATERIAL)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41761409" target="_blank">Hypertensive Hemodynamics in Type II Endoleak: Unveiling Biomechanical Pathways to Thrombosis Impediment and Aneurysm Destabilization via FSI Simulation.</a></b> Mo X, Wang Y, Zhang F, Yu H, Qing K, <i>International journal for numerical methods in biomedical engineering</i>. (97.4% CARDIOVASCULAR/CARDIOPULMONARY; 0.9% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41767643" target="_blank">Left-Side Versus Right-Side Lateral Tilt During Maternal CPR: Effects on Compression Quality and Rescuer Fatigue.</a></b> Kao CL, Tsou JY, Hong MY, Chang CJ, Su FC, Chi CH, <i>Emergency medicine international</i>. (56.4% CARDIOVASCULAR/CARDIOPULMONARY; 21.4% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41759712" target="_blank">The &quot;Locomotive&quot; Dual Aspiration Technique for Iliofemoral Venous Thrombectomy.</a></b> Cheng Z, Jin Y, <i>European journal of vascular and endovascular surgery : the official journal of the European Society for Vascular Surgery</i>. (84.4% CARDIOVASCULAR/CARDIOPULMONARY; 3.8% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41747530" target="_blank">Intrinsic capacity and its dynamic change associate with risk of cardiovascular disease: Evidence from multinational prospective cohorts.</a></b> Liu Y, Wang J, Zhao X, Li X, Wang C, Yang J, Han H, Zhou Q, Zhang Y, <i>Archives of gerontology and geriatrics</i>. (98.0% CARDIOVASCULAR/CARDIOPULMONARY; 0.5% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749760" target="_blank">An Automated Modular Platform for Vascular Graft Assessment via Coronary-like Flow-Induced Stimulation.</a></b> Pederzani E, Moro L, Bolandrina AS, Rega S, Perrucci GL, Fiore GB, Soncini M, <i>Bioengineering (Basel, Switzerland)</i>. (68.6% CARDIOVASCULAR/CARDIOPULMONARY; 24.4% TISSUE/BIOMATERIAL)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749729" target="_blank">A Parametric Finite Element Analysis of Chick Embryo Aortic Valve Leaflet Biomechanics.</a></b> Mutlu O, Rugonyi S, <i>Bioengineering (Basel, Switzerland)</i>. (77.5% CARDIOVASCULAR/CARDIOPULMONARY; 14.4% MODELING)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41776353" target="_blank">Author Correction: Role of biomechanical factors in plaque rupture and erosion: insight from intravascular imaging based computational modeling.</a></b> Wang L, Zhu Y, Zhao C, Maehara A, Lv R, Guo X, Yang M, Mintz GS, Tang D, Jia H, Yu B, <i>NPJ cardiovascular health</i>. (93.7% CARDIOVASCULAR/CARDIOPULMONARY; 3.3% MODELING)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41775937" target="_blank">Role of biomechanical factors in plaque rupture and erosion: insight from intravascular imaging based computational modeling.</a></b> Wang L, Zhu Y, Zhao C, Maehara A, Lv R, Guo X, Yang M, Mintz GS, Tang D, Jia H, Yu B, <i>NPJ cardiovascular health</i>. (92.8% CARDIOVASCULAR/CARDIOPULMONARY; 4.6% MODELING)<br />
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<br />
<span style="font-size:16px"><b>*CELLULAR*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41769380" target="_blank">The dilemma of cancer biomechanics assessment: Living soft matter from a rheological perspective.</a></b> Ferraro R, Guido S, Caserta S, <i>Materials today. Bio</i>. (67.8% CELLULAR/SUBCELLULAR; 22.7% TISSUE/BIOMATERIAL)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41779786" target="_blank">Stress-dependent growth in breast cancer arises from a mechano-osmotic coupling and cell-sizing checkpoint.</a></b> Senthilkumar I, Vangheel J, Kumar V, McNamara L, Smeets B, Howley E, McEvoy E, <i>Proceedings of the National Academy of Sciences of the United States of America</i>. (97.5% CELLULAR/SUBCELLULAR; 0.9% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41783920" target="_blank">3D manipulation of cell spheroids using laser-actuated microrobots.</a></b> Wang Y, Harder P, &#304;yisan N, &amp;Ouml;zkale B, <i>Materials horizons</i>. (93.2% CELLULAR/SUBCELLULAR; 1.8% METHODS)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41774254" target="_blank">Effects of tight junctions on biomechanical response of blood-brain barrier under stable cavitation.</a></b> Kang L, Zhu H, Tian Z, Liu X, Zhu F, Hu G, <i>Biomechanics and modeling in mechanobiology</i>. (83.3% CELLULAR/SUBCELLULAR; 6.3% TISSUE/BIOMATERIAL)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41770291" target="_blank">Repurposing statins for choriocarcinoma: targeting the mevalonate pathway to disrupt mechanosignaling and overcome therapeutic resistance.</a></b> Alshaikh ABA, Al-Kuraishy HM, Kafy S, Abdelaziz AM, Batiha GE, <i>Clinical &amp;amp; experimental metastasis</i>. (95.7% CELLULAR/SUBCELLULAR; 1.9% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41763634" target="_blank">Mechanical evidence of the impossibility of directed motion of Trypanosoma cruzi towards preferred organs in the human body, a simulation 2D model within a laminar flow.</a></b> Castillo AM, Villalobos G, <i>Bio Systems</i>. (53.6% CELLULAR/SUBCELLULAR; 28.3% MODELING)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41748583" target="_blank">Gear-like MOF microrobots for single cell mechanotransduction of microvilli.</a></b> Liu X, Wang Y, Lin L, Liu N, Yang Z, Wang P, Yan X, Guo J, Jin D, Ma X, <i>Nature communications</i>. (79.0% CELLULAR/SUBCELLULAR; 15.5% ROBOTICS)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41753000" target="_blank">&quot;Protective&quot; Imazalil vs Its Negative Effects on Immune System Cells-Neutrophils.</a></b> Ratajczak-Wrona W, Aniszewska A, Iwaniuk A, Garley M, Wo&#322;czy&#324;ski S, Skar&#380;ynski DJ, Wrobel J, Zebrowska A, Radziwon P, Pucelik B, Jab&#322;o&#324;ska E, <i>Life (Basel, Switzerland)</i>. (93.0% CELLULAR/SUBCELLULAR; 1.3% ERGONOMICS)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41757021" target="_blank">Defining Functional Correction Thresholds in Primary Ciliary Dyskinesia for Effective Gene Therapies.</a></b> Fitzpatrick BE, Wineinger BJ, Babcock JE, Quiroz EJ, Liu EC, Gautam LK, Pezzulo AA, Moninger TO, Meyerholz DK, Hornick DB, Ryan AL, <i>bioRxiv : the preprint server for biology</i>. (94.7% CELLULAR/SUBCELLULAR; 1.1% CARDIOVASCULAR/CARDIOPULMONARY)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41759487" target="_blank">Optimal design for multi-compartment cell elasticity estimation using AFM and super-resolution imaging.</a></b> Mendiola EA, Walther BK, Mojiri A, Cooke JP, Ohayon J, Pettigrew RI, Avazmohammadi R, <i>Computer methods and programs in biomedicine</i>. (73.0% CELLULAR/SUBCELLULAR; 19.3% METHODS)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41768586" target="_blank">WASHC3 knockout disrupts mitochondrial protein homeostasis and energy metabolism in cardiomyocytes.</a></b> Kim S, Park DD, Glazier A, Rottbauer W, Just S, <i>Frontiers in cardiovascular medicine</i>. (61.6% CELLULAR/SUBCELLULAR; 20.9% CARDIOVASCULAR/CARDIOPULMONARY)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749861" target="_blank">Biomechanical Forces in Prostate Cancer: Current Insights and Future Directions.</a></b> Ju Y, Ni D, Zou S, Dai P, Xie J, He K, Song Y, Xing Y, Chen L, <i>Cancers</i>. (96.2% CELLULAR/SUBCELLULAR; 2.8% TISSUE/BIOMATERIAL)<br />
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<span style="font-size:16px"><b>*COMPARATIVE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41780170" target="_blank">How Fish Body Stiffness Distribution Affects Swimming Performance:A Theoretical Perspective.</a></b> Zhang X, Pei Z, Tang Z, <i>Bioinspiration &amp;amp; biomimetics</i>. (74.4% COMPARATIVE; 13.0% MODELING)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41774229" target="_blank">Biological alterations of polyvinyl chloride (PVC) microplastics on Danio rerio at environmentally relevant concentrations - risk assessment.</a></b> Devapriya P, Malik MS, Kalpana M, Kalaivani S, Devi V, Raguvaran K, Maheswaran R, <i>Fish physiology and biochemistry</i>. (52.5% COMPARATIVE; 8.2% CELLULAR/SUBCELLULAR)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41755359" target="_blank">Biomechanics of the intramandibular joint in Alligator mississippiensis.</a></b> Fortner JD, Sellers KC, Middleton KM, Holliday CM, <i>Journal of anatomy</i>. (47.6% EVOLUTION/ANTHROPOLOGY; 45.9% COMPARATIVE)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41759181" target="_blank">A novel approach to quantifying mammal locomotor repertoires using scoring and cluster analysis.</a></b> Anderson SC, Cox P, Fitton L, Bates KT, G&amp;aacute;lvez-L&amp;oacute;pez E, <i>Proceedings. Biological sciences</i>. (57.9% COMPARATIVE; 21.4% METHODS)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41747970" target="_blank">The behavioural, toxicological, and biochemical effects of caffeine on Lumbriculus variegatus.</a></b> Labdon GE, Kelly-Laubscher R, Cunningham MR, Davies NA, Reed SG, Seeley A, <i>Environmental toxicology and pharmacology</i>. (88.4% COMPARATIVE; 2.3% EVOLUTION/ANTHROPOLOGY)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41756965" target="_blank">An ancient monoaminergic signaling system coordinates contractility in a nerveless sponge.</a></b> Zang RX, Malaiwong N, Wang L, Maziarz JD, Jia K, Drotleff B, Stein F, Noor M, Roberts CJ, Rettel M, Schwarz JJ, Ikmi A, Watanabe S, Prevedel R, O'Donnell MP, Musser JM, <i>bioRxiv : the preprint server for biology</i>. (62.4% COMPARATIVE; 15.8% NEURAL)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41752606" target="_blank">Dopamine Enhances Healthspan and Locomotor Performance via Antioxidant Defense in Silkworms, Bombyx mori.</a></b> He S, Yang W, Hu H, Dai F, Tong X, <i>Insects</i>. (57.4% COMPARATIVE; 22.0% NEURAL)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41756008" target="_blank">Myliobatid Ray Gliding Dynamics: Experimental Tests of Body Shape and Tail Length on Stability.</a></b> Cooper SB, White CF, Lauder GV, Chaumel J, <i>Integrative organismal biology (Oxford, England)</i>. (89.7% COMPARATIVE; 3.4% MODELING)<br />
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<span style="font-size:16px"><b>*DENTAL/ORAL/FACIAL*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41781582" target="_blank">Bilateral pseudo-disc changes in a minipig model for unilateral anterior disc displacement of the temporomandibular joint.</a></b> Liu W, Bai X, Yuan W, Wang C, Hu Y, Yu J, Zhang Y, Shi J, <i>Oral and maxillofacial surgery</i>. (91.8% DENTAL/ORAL/FACIAL; 3.4% VETERINARY/AGRICULTURAL)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41776079" target="_blank">Biomechanical rationale for a hybrid mIVSRO-SSRO surgical strategy in mandibular asymmetry: a retrospective cohort study.</a></b> Nagae N, Kikuta S, Iwanaga J, Kusukawa J, <i>Oral and maxillofacial surgery</i>. (97.4% DENTAL/ORAL/FACIAL; 1.2% ORTHOPAEDICS/SURGERY)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41781247" target="_blank">Osseodensification versus standard osteotomy: systematic review and meta-analysis of dental implant torque and stability.</a></b> Marzorati G, Khayyat F, Berm&amp;uacute;dez V, Cortell I, Merck B, <i>International journal of oral and maxillofacial surgery</i>. (99.1% DENTAL/ORAL/FACIAL; 0.2% BONE)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41771901" target="_blank">Behavior of mandibular fractures under earth and microgravity conditions: a finite element analysis.</a></b> Manoj S, K P MK, A P VD, <i>NPJ microgravity</i>. (57.9% DENTAL/ORAL/FACIAL; 24.3% TRAUMA/IMPACT)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41771161" target="_blank">A 7-Year Follow-up: Managing Biomechanics, Function, and an Esthetic Disability.</a></b> Swanson K, Hermanides L, <i>Compendium of continuing education in dentistry (Jamesburg, N.J. : 1995)</i>. (97.7% DENTAL/ORAL/FACIAL; 0.5% PROSTHETICS/ORTHOTICS)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41767362" target="_blank">Subjective Evaluation of Denture Adhesives in Mandibular Complete Denture Patients: A Randomized Controlled Trial.</a></b> Maqsood A, Shahidan WNS, Abbasi MS, Salahuddin A, Das G, Ahmed N, Heboyan A, <i>Health science reports</i>. (81.8% DENTAL/ORAL/FACIAL; 13.5% PROSTHETICS/ORTHOTICS)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41767975" target="_blank">A Biomimetic Adhesive Approach for Restoring a Cracked Tooth in a Single Visit: A Case Report.</a></b> Lin Z, Xu M, Chen R, Lin J, <i>Case reports in dentistry</i>. (98.6% DENTAL/ORAL/FACIAL; 0.3% TISSUE/BIOMATERIAL)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41764968" target="_blank">Effects of infraglottal implantation on voice production in type I thyroplasty: a computational study.</a></b> Jiang W, de Luzan CF, Oren L, Gutmark E, Zheng X, Xue Q, <i>Journal of biomechanics</i>. (61.9% DENTAL/ORAL/FACIAL; 17.1% MODELING)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41762945" target="_blank">Orthodontic traction of impacted mandibular premolars through buccal-shelf mini-implant supported cantilever springs: A case series.</a></b> Shi Y, Lyu X, Fan Q, Lai W, Long H, <i>International orthodontics</i>. (98.0% DENTAL/ORAL/FACIAL; 0.2% COMPARATIVE)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41759394" target="_blank">Orthognathic surgery biomechanics revisited: Simple machine concepts, force distribution, and surgical predictability.</a></b> Grillo R, de Oliveira Andriola F, Gravalos R, Calais W, da Silva Caixeta Neto L, Melhem-Elias F, <i>Journal of cranio-maxillo-facial surgery : official publication of the European Association for Cranio-Maxillo-Facial Surgery</i>. (79.8% DENTAL/ORAL/FACIAL; 9.1% ORTHOPAEDICS/SURGERY)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749182" target="_blank">The effect of residual root length and different root canal filling materials on biomechanical stress distribution following apical resection: a finite element analysis study.</a></b> Aky&amp;uuml;z &#304;E, Esim E, D&amp;uuml;zg&amp;uuml;n S, <i>BMC oral health</i>. (96.3% DENTAL/ORAL/FACIAL; 0.6% TISSUE/BIOMATERIAL)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41747663" target="_blank">Morphological analysis of posterior fossa in Apert and Crouzon syndromes before and after posterior cranial vault expansion.</a></b> Dong R, Liang C, Evans SE, Johnson D, Shui W, Duncan C, Khonsari RH, Paternoster G, Moazen M, <i>Journal of cranio-maxillo-facial surgery : official publication of the European Association for Cranio-Maxillo-Facial Surgery</i>. (22.2% DENTAL/ORAL/FACIAL; 16.2% ORTHOPAEDICS/SPINE)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41759452" target="_blank">A patient-specific PEEK fixation system for simultaneous maxillary advancement and midfacial contour restoration in Le Fort I osteotomy: A finite element analysis.</a></b> Sun Y, Li Y, Xie Z, Hu L, <i>Journal of cranio-maxillo-facial surgery : official publication of the European Association for Cranio-Maxillo-Facial Surgery</i>. (97.2% DENTAL/ORAL/FACIAL; 0.8% ORTHOPAEDICS/SPINE)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41768801" target="_blank">Influence of thickness and base material in class II restorations with nanofilled composites: finite element study.</a></b> Cruzado-Oliva FH, Vega-Anticona A, Ortiz-Diaz DA, Arbildo-Vega HI, Coronel-Zubiate FT, <i>Frontiers in dental medicine</i>. (96.2% DENTAL/ORAL/FACIAL; 1.8% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41768128" target="_blank">Primary fixation stability evaluation of pre-bent titanium miniplate configurations in mandibular reconstruction.</a></b> Ruf P, Cebeci &amp;Ouml;, Orassi V, Steffen C, Duda GN, Heiland M, Checa S, Rendenbach C, <i>Frontiers in bioengineering and biotechnology</i>. (94.3% DENTAL/ORAL/FACIAL; 2.7% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41753124" target="_blank">Influence of Plate Design, Thickness, and Fixation Architecture on Mandibular Advancement Stability: A Finite Element Analysis.</a></b> Olate S, Ravelo V, Garc&amp;iacute;a Guevara H, Sacco R, Parra M, de Moraes M, <i>Journal of clinical medicine</i>. (97.9% DENTAL/ORAL/FACIAL; 0.6% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41756806" target="_blank">Fungicidal efficacy of caprylic acid using three different bovine milk types against Candida albicans: An in vitro study.</a></b> Pawar A, Keswani K, Shetty P, Kambli V, Dubey P, Kachari M, <i>Journal of conservative dentistry and endodontics</i>. (90.6% DENTAL/ORAL/FACIAL; 3.5% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41756796" target="_blank">The influence of dental cavity on biomechanical stress and strain distribution: A finite element analysis.</a></b> Widyastuti A, Ratih DN, Siswomihardjo W, Dharma IGBB, <i>Journal of conservative dentistry and endodontics</i>. (98.1% DENTAL/ORAL/FACIAL; 0.4% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749709" target="_blank">Scaffolds and Stem Cells Show Promise for TMJ Regeneration: A Systematic Review.</a></b> Nedeljkovic M, Rosic G, Selakovic D, Milanovic J, Arnaut A, Vasiljevic M, Jovicic N, Veljkovic L, Milanovic P, Stevanovic M, <i>Bioengineering (Basel, Switzerland)</i>. (60.7% DENTAL/ORAL/FACIAL; 30.4% TISSUE/BIOMATERIAL)<br />
<br />
<br />
<span style="font-size:16px"><b>*ERGONOMICS*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41784534" target="_blank">Test of regulatory mode theory in explaining employee performance and well-being: A meta-analysis.</a></b> Yin K, Liu Y, Xu Q, Xing LL, Dong N, <i>Applied psychology. Health and well-being</i>. (82.6% ERGONOMICS; 3.8% SPORT/EXERCISE)<br />
<br />
<br />
<span style="font-size:16px"><b>*GAIT/LOCOMOTION*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41783465" target="_blank">Associations of Skeletal Muscle Mass and Percent Body Fat with Balance, Gait, and Locomotive Syndrome Risk in Community-dwelling Older Women.</a></b> Nishimoto J, Ono K, Taki S, Tanaka R, <i>Progress in rehabilitation medicine</i>. (31.0% MUSCLE; 24.8% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41772259" target="_blank">Longitudinal changes in effective connectivity associated with worsening freezing of gait in Parkinson's disease: a resting-state functional MRI study.</a></b> Taniguchi S, D'Cruz N, Kimura Y, Kakuda K, Ogawa K, Kochiyama T, Kajiyama Y, Shirahata E, Ge L, Asai K, Nieuwboer A, Gilat M, Ikenaka K, Mochizuki H, <i>Journal of neurology</i>. (65.7% GAIT/LOCOMOTION; 24.3% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41770532" target="_blank">Footwear and Illumination Modulate Muscle Co-Contraction Strategies and Joint Work Redistribution During Stair-to-Ground Transition.</a></b> Xu Y, Zhu C, Sun D, Jian X, Xia Z, Qian Y, Shen L, Song Y, Cen X, S&amp;aacute;rosi J, B&amp;iacute;r&amp;oacute; I, Gu Y, <i>Journal of applied physiology (Bethesda, Md. : 1985)</i>. (70.8% GAIT/LOCOMOTION; 13.0% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41784285" target="_blank">Modulation of Corticomuscular Coupling With Split-Belt Locomotor Adaptation in Healthy Young Males.</a></b> Oshima A, Yokoyama H, Kaneko N, Takahashi R, Takiyama K, Nakazawa K, <i>The European journal of neuroscience</i>. (83.3% GAIT/LOCOMOTION; 14.6% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41767345" target="_blank">Biomechanical Characteristics of Compensatory Reactive Step Responding to the Simulated Trip Perturbation While Walking in Community-Dwelling People With Stroke: A Cross-Sectional Study.</a></b> Chan SP, Kwong PW, Cheing GL, Tsang SM, <i>Health science reports</i>. (89.5% GAIT/LOCOMOTION; 5.2% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41765318" target="_blank">Shift in motor-state equilibrium explains gait therapy effects of apomorphine in experimental Parkinsonism.</a></b> Kabaoglu B, Garulli EL, De Sa R, Vogt A, Behrsing R, Skrobot M, Paulat R, Pollak P, Guldin LS, Gerster M, Neumann WJ, Endres M, Harms C, Wenger N, <i>Experimental neurology</i>. (68.2% GAIT/LOCOMOTION; 16.0% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41763994" target="_blank">Erratum to &lt;&quot;Importance of analyzing spasticity and co-activation as complementary biomarkers of gait in children with cerebral palsy&quot;&gt; &lt;Clinical Biomechanics Volume 132, February 2026, 106743&gt;.</a></b> Graffagnino G, Sijobert B, Patte K, Azevedo-Coste C, Gasq D, <i>Clinical biomechanics (Bristol, Avon)</i>. (81.6% GAIT/LOCOMOTION; 8.3% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41765012" target="_blank">Individuals With Knee Osteoarthritis and Symmetrical Total Joint Moment Exhibit Bilateral Gait Characteristics Associated With Osteoarthritis.</a></b> Halliwell C, Budarick A, Astephen Wilson J, Rutherford D, Hannigan M, Moyer R, <i>Journal of applied biomechanics</i>. (63.7% GAIT/LOCOMOTION; 25.6% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41747351" target="_blank">Nordic walking in older adults: Observational evidence of potential biomechanical trade-offs.</a></b> Ter-Margaryan N, Sekoyan D, Dashtoyan H, Petrosyan T, <i>Rehabilitacion</i>. (94.3% GAIT/LOCOMOTION; 1.8% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41763114" target="_blank">Variability in spatial and temporal gait dynamics during aging: a narrative review on the role of the neural system.</a></b> Centner C, Ritzmann R, Marusic U, Hughes L, <i>Archives of gerontology and geriatrics</i>. (96.7% GAIT/LOCOMOTION; 1.0% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41750248" target="_blank">Comparison of Toe Clearance Characteristics Between Simulated Obstacle Crossing Using Visual Height Cues and Actual Obstacle Crossing.</a></b> Kasai M, Machida Y, Washizu M, Sugawara K, Suzuki T, <i>Brain sciences</i>. (77.3% GAIT/LOCOMOTION; 6.6% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41756464" target="_blank">Body-weight support is the primary driver of elevated walking cost in cerebral palsy.</a></b> Ries AJ, Steele KM, Donelan JM, Schwartz MH, <i>Research square</i>. (89.4% GAIT/LOCOMOTION; 4.3% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41755157" target="_blank">Utilizing an Augmented Reality Headset to Accurately Quantify Lower Extremity Function in Parkinson's Disease.</a></b> Bazyk A, Waltz C, Kaya RD, Zimmerman E, Johnston JD, Walter BL, Rosenfeldt AB, Miller Koop M, Alberts JL, <i>Sensors (Basel, Switzerland)</i>. (46.0% GAIT/LOCOMOTION; 33.0% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41755890" target="_blank">Reliability of DIERS pedogait system for evaluating spatiotemporal gait parameters in knee osteoarthritis and its association with Achilles tendon stiffness asymmetry.</a></b> Shen X, Chen J, Zhang J, Tian J, Cheng S, Cao J, Li C, Xu X, <i>Frontiers in physiology</i>. (47.2% GAIT/LOCOMOTION; 30.3% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41752864" target="_blank">Modulation of Forward Propulsion and Foot Dorsiflexion by Spinal and Muscular Stimulation During Human Stepping.</a></b> Ananyev S, Sakun I, Lyakhovetskii V, Grishin A, Moshonkina T, Gerasimenko Y, <i>Life (Basel, Switzerland)</i>. (51.3% GAIT/LOCOMOTION; 35.1% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749674" target="_blank">Beyond Alignment: Static Coronal Alterations Do Not Predict Dynamic Foot Loading or Spatiotemporal Gait Patterns After Unilateral Total Knee Replacement-A Prospective Study.</a></b> Ntourantonis D, Iliopoulos I, Pantazis K, Kaspiris A, Kokkalis Z, Gliatis J, Panagiotopoulos E, <i>Bioengineering (Basel, Switzerland)</i>. (55.6% GAIT/LOCOMOTION; 15.1% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41783279" target="_blank">The functional gait deviation index.</a></b> Minhas SK, Sangeux M, Polak J, Carey M, <i>Journal of applied statistics</i>. (86.9% GAIT/LOCOMOTION; 6.5% METHODS)<br />
<br />
<br />
<span style="font-size:16px"><b>*HAND/FINGER/FOOT/TOE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41783403" target="_blank">The Swiss Cheese Effect: A Biomechanical Study of Fifth Metacarpal Structural Integrity After Multiple Kirschner Wire Passes.</a></b> Bickley R, Vaughan A, Yohe G, Means KR, Abbasi P, Giladi AM, <i>Journal of hand surgery global online</i>. (90.3% HAND/FINGER/FOOT/TOE; 7.1% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41782358" target="_blank">Total Ankle Arthroplasty Kinematics Using a Symmetric Bicondylar Talar Component Design: A Cadaveric Gait Simulation Short Report.</a></b> Palma J, Hoffman JW, Harnroongroj T, Kim S, Henry J, Deland J, Ellis SJ, Steineman B, Demetracopoulos CA, <i>Foot &amp;amp; ankle international</i>. (32.4% HAND/FINGER/FOOT/TOE; 21.4% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41777704" target="_blank">Foot and ankle biomaterials: a comprehensive review of current applications, challenges, and future directions.</a></b> Elvin P, Sanchez A, Reyes AA, Andrade H, Karami M, Mir HT, La Fontaine J, Rodrigues D, Biguetti C, <i>Journal of orthopaedic translation</i>. (81.0% HAND/FINGER/FOOT/TOE; 6.9% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41772844" target="_blank">Establishing Normative Values for the Supination Resistance Test: An International Cross-Sectional Study.</a></b> Moisan G, Isabelle PL, Carri&amp;oacute;n &amp;Aacute;G, Chicoine D, Farahpour N, Griffiths I, Dami A, Reguera Medina JM, McBride S, <i>Journal of foot and ankle research</i>. (71.7% HAND/FINGER/FOOT/TOE; 16.6% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41763261" target="_blank">Risk factors for first metatarsal fracture in minimally invasive hallux valgus surgery : a case-control study.</a></b> Ferreira GF, Proen&amp;ccedil;a DS, Araujo GF, Porto RS, Sevilla D, Araujo Nunes G, Mattos E Dinato MC, Lewis TL, Ray R, Pereira Filho MV, <i>The bone &amp;amp; joint journal</i>. (86.1% HAND/FINGER/FOOT/TOE; 11.3% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41756592" target="_blank">A scoping review of the impact of transverse carpal ligament sectioning on the thumb carpometacarpal joint: Does it increase the risk of ostearthritis?</a></b> Steiner Q, George R, Edalatpour A, Attaluri PK, Michelotti BF, <i>JPRAS open</i>. (93.3% HAND/FINGER/FOOT/TOE; 3.0% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41775540" target="_blank">Biomechanical effects of selective tarsometatarsal arthrodesis configurations: A finite element analysis.</a></b> Bar&amp;ccedil;a F, Demir EB, G&amp;uuml;ng&amp;ouml;r&amp;uuml;rler M, Akdo&#287;an BM, Hav&#305;t&amp;ccedil;&#305;o&#287;lu &amp;Ccedil;, Akdo&#287;an M, Ate&#351; Y, Atilla HA, <i>Foot and ankle surgery : official journal of the European Society of Foot and Ankle Surgeons</i>. (67.2% HAND/FINGER/FOOT/TOE; 15.8% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749193" target="_blank">Virtual 3D landmark palpation in clubfoot: feasibility of an innovative standardized morphometric protocol. A preliminary study.</a></b> Ali Baba AL, Beyer B, Moungondo F, Nday Ilunga GR, Kalau WA, Feipel V, Dereymaeker G, Van Sint Jan S, <i>BMC musculoskeletal disorders</i>. (86.0% HAND/FINGER/FOOT/TOE; 5.5% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41780364" target="_blank">The climber's finger : imaging of finger flexor tendon pulley injuries.</a></b> Bouredoucen H, Bouvet C, Taihi L, Laredo JD, Sch&amp;ouml;ffl V, <i>European journal of radiology</i>. (98.8% HAND/FINGER/FOOT/TOE; 0.5% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41769392" target="_blank">Age-dependent changes in the transverse carpal ligament and median nerve: a cadaveric histological and biomechanical study.</a></b> Niyomchan A, Siriphorn A, Kathinted K, Pamornpol B, <i>PeerJ</i>. (55.4% HAND/FINGER/FOOT/TOE; 38.3% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41768428" target="_blank">Recurrence and Function After Minimally Invasive Hallux Valgus Correction: A Dual-Centre Retrospective Comparative Cohort Study of MICA Alone vs MICA+DMMO.</a></b> Genuth G, Moses N, Brown C, Stavrou P, Iselin LD, <i>Foot &amp;amp; ankle orthopaedics</i>. (75.9% HAND/FINGER/FOOT/TOE; 19.9% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41783348" target="_blank">A custom force plate for quantifying the force applied by the finger during smartphone usage.</a></b> Han Y, Vallerini FM, Holdsworth F, Wanglertpanich K, Kedgley AE, Masouros SD, <i>Frontiers in bioengineering and biotechnology</i>. (91.2% HAND/FINGER/FOOT/TOE; 4.9% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41752926" target="_blank">Toward a Phenotype-Driven Continuum Model in Trigger Finger: Proposing a Sonographic Framework for Personalized Management.</a></b> Kim SH, Hwang J, Yoon Y, Choi J, Ko G, Kim H, Sung D, Park R, Shim J, Lee J, Kim S, Kim Y, Lam KHS, <i>Life (Basel, Switzerland)</i>. (99.1% HAND/FINGER/FOOT/TOE; 0.2% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41777924" target="_blank">The Role of Distal Medial Cuneiform Angle in Hallux Valgus: A Systematic Review.</a></b> Al Zuabi ZAA, Aziz A, Shetty A, Li Z, Sarda R, Norrish AR, Pasapula C, <i>Cureus</i>. (94.6% HAND/FINGER/FOOT/TOE; 2.6% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749675" target="_blank">Biomechanical Comparison of Different Fixation Methods for Treating Jones Fracture of the Fifth Metatarsal.</a></b> Shih CM, Yen YC, Wang CH, Huang YH, Wang SP, Su KC, <i>Bioengineering (Basel, Switzerland)</i>. (93.7% HAND/FINGER/FOOT/TOE; 5.0% ORTHOPAEDICS/SURGERY)<br />
<br />
<br />
<span style="font-size:16px"><b>*JOINT/CARTILAGE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41780165" target="_blank">Organ-on-a-chip systems for osteochondral units: unveiling biomechanical and pathological mechanisms.</a></b> Liu Y, Li J, Gao F, Zhang T, Wang C, Wang W, <i>Biofabrication</i>. (70.9% JOINT/CARTILAGE; 23.1% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41778734" target="_blank">Targeting Strategies for Osteoarthritis: Biomaterials, Joint-Specific Drug Delivery, and Translational Progress.</a></b> Chen H, Sun J, Liao Y, Cao P, Su Z, Ren R, Mao Y, Li Z, Zhu S, Jiang N, <i>Advanced healthcare materials</i>. (97.2% JOINT/CARTILAGE; 1.2% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41768537" target="_blank">Knee kinesiography in 2026: Current and future applications for digital orthopaedics and personalised total knee arthroplasty: A narrative review.</a></b> Favroul C, Cagnin A, Batailler C, Lustig S, <i>Journal of experimental orthopaedics</i>. (32.6% METHODS; 24.8% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41768536" target="_blank">Increased medial posterior tibial slope is associated with medial compartment osteoarthritis of the knee.</a></b> El Kayali MKD, B&amp;uuml;rck LV, Gwinner C, Oehme S, Getgood A, Pichler L, <i>Journal of experimental orthopaedics</i>. (96.1% JOINT/CARTILAGE; 0.9% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41777129" target="_blank">New insights into the pain of knee osteoarthritis: the characteristics of deep pain and abnormal central processing.</a></b> Chen ML, DU YQ, Xu BY, Zhao F, Hu XQ, Wang Y, Zhang Y, <i>Sheng li xue bao : Acta physiologica Sinica</i>. (89.9% JOINT/CARTILAGE; 3.0% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41768939" target="_blank">Tibial Tubercle Osteotomy With Matrix-Associated Autologous Chondrocyte Implantation and Lateral Retinacular Lengthening for a Patellar Chondral Defect.</a></b> Sherman N, Leite CBG, Schmidt S, Franco D, Protzuk O, Lattermann C, <i>Video journal of sports medicine</i>. (54.4% JOINT/CARTILAGE; 39.2% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41752794" target="_blank">Associations Between Coronal Alignment, Patellar Height, Chondrocalcinosis and Radiographic Severity of Knee Osteoarthritis in a Single-Center Cross-Sectional Clinical Cohort.</a></b> Irsay L, Popa T, Iliescu MG, Bondor CI, Ciubean AD, Ciortea VM, <i>Medicina (Kaunas, Lithuania)</i>. (96.4% JOINT/CARTILAGE; 0.8% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41752881" target="_blank">Interobserver and Intraobserver Reliability of a Novel Classification System for Distal Radioulnar Joint Instability.</a></b> Dmour A, Burlui AM, Dmour BA, T&amp;icirc;rnovanu &#536;D, Popescu DC, T&amp;icirc;rnovanu MC, Savin L, Pertea M, Cozma T, Carp AC, S&amp;icirc;rbu PD, Puha B, <i>Life (Basel, Switzerland)</i>. (54.5% JOINT/CARTILAGE; 18.7% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41777964" target="_blank">Comparative Study of the Acromioglenoid Angle and Critical Shoulder Angle in Assessing the Role of Scapular Morphology in Primary Glenohumeral Osteoarthritis.</a></b> Ratanpara L, Mishra AK, Sihag P, Xalxo N, Chauhan PR, Mehra S, <i>Cureus</i>. (86.8% JOINT/CARTILAGE; 5.7% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41769419" target="_blank">Superior Migration of the Humeral Head in Chronic Rotator Cuff Disease: A Narrative Review of Pathomechanisms, Diagnosis, and Treatment.</a></b> Zakry&#347; M, Zakry&#347; K, Stupnicki S, Szot M, Oparcik A, Tarczykowski J, Kwa&#347;niewska N, <i>Cureus</i>. (63.1% JOINT/CARTILAGE; 29.5% ORTHOPAEDICS/SURGERY)<br />
<br />
<br />
<span style="font-size:16px"><b>*METHODS*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41779855" target="_blank">Textile suit for anywhere full-body motion capture.</a></b> Sun H, Feng Y, Kao PC, Black MJ, Kramer-Bottiglio R, <i>Science advances</i>. (98.2% METHODS; 0.3% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41779654" target="_blank">Unsupervised Contrastive Refinement with Graph-Aware Multimodal Interaction for Radiology Report Generation.</a></b> Daydar A, Reddy CK, Kumar S, Laskar H, Sur A, Kanagaraj S, <i>IEEE journal of biomedical and health informatics</i>. (79.1% METHODS; 10.5% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41784547" target="_blank">Friday Harbor laboratories: experimental biology at the water's edge.</a></b> Summers AP, Dethier MN, <i>The Journal of experimental biology</i>. (25.9% METHODS; 16.8% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41761651" target="_blank">Skin-Interfaced Wireless Biomechanical System for Detecting Aspiration in Elderly Populations.</a></b> Zhang S, Li D, Liu T, Nie Z, Wu K, Lin X, Zhang J, Xu J, Wang Y, Zhong R, Zhao P, Wang Y, Ding S, Cui G, Wen Y, Li B, Shang S, Han M, <i>Advanced healthcare materials</i>. (68.6% METHODS; 10.8% DENTAL/ORAL/FACIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41765004" target="_blank">Comparison of 3-Dimensional Thorax and Upper-Extremity Joint Kinematics During Manual Wheelchair Propulsion Using Marker-Based and Markerless-Based Biomechanical Models.</a></b> Moon J, Tran DF, Lopez JR, Hanks MM, <i>Journal of applied biomechanics</i>. (42.7% METHODS; 22.5% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41768675" target="_blank">Nanogenerators in Biomedical Frontiers: Revolutionizing Self-Powered Healthcare Systems.</a></b> Varshney A, Chauhan S, Rawal S, Herrera OR, Sharma S, <i>ACS omega</i>. (65.1% METHODS; 11.7% ROBOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41767674" target="_blank">Non-invasive wireless electroencephalographic recording of the sleep-wake cycle in freely moving reptiles, birds, and mammals: a novel methodology compatible with animal welfare.</a></b> Fern&amp;aacute;ndez-S&amp;aacute;nchez M, Barros-Garc&amp;iacute;a C, Garz&amp;oacute;n M, <i>Frontiers in veterinary science</i>. (85.6% METHODS; 8.1% VETERINARY/AGRICULTURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41757318" target="_blank">Optimizing wearable IMU configurations for running gait analysis: a machine learning-based sensor fusion approach.</a></b> Yuan Y, Yu Y, Cai S, Cheng W, <i>Frontiers in bioengineering and biotechnology</i>. (90.3% METHODS; 4.3% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749713" target="_blank">Machine Learning-Based Estimation of Knee Joint Mechanics from Kinematic and Neuromuscular Inputs: A Proof-of-Concept Using the CAMS-Knee Datasets.</a></b> Derungs YN, Bertsch M, Malla K, Maas A, Grupp TM, Trepczynski A, Damm P, Nasab SHH, <i>Bioengineering (Basel, Switzerland)</i>. (67.1% METHODS; 24.7% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749704" target="_blank">Proof-of-Concept of IMU-Based Detection of ICU-Relevant Agitation Motion Patterns in Healthy Volunteers.</a></b> Yokoyama R, Hayasaka T, Harada T, Huang S, Yarimizu K, Yokoyama M, Kawamae K, <i>Bioengineering (Basel, Switzerland)</i>. (87.9% METHODS; 3.1% ERGONOMICS)<br />
<br />
<br />
<span style="font-size:16px"><b>*MODELING*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41784657" target="_blank">Finite element modeling of inter-individual variation in soft tissue mechanical response to localized pressure.</a></b> Simonova A, Orlov A, Weihs D, <i>Biomechanics and modeling in mechanobiology</i>. (92.9% MODELING; 5.1% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41770438" target="_blank">A Computational Framework for Simulating Patient-Specific TMJ Biomechanics Using a Combined Multibody Dynamics and Finite Element Approach.</a></b> Ahmadi F, Sun S, Zhao J, Chen J, Wilson MB, Damon B, Wu Y, Almpani K, Chung R, Jani P, Chen P, Slate EH, Lee JS, Sagl B, Yao H, <i>Annals of biomedical engineering</i>. (66.7% MODELING; 28.0% DENTAL/ORAL/FACIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41757768" target="_blank">Dynamic breast response under different running intensities: a pilot finite element study across representative breast types.</a></b> Yu J, Sun Y, Zhang S, Yick KL, Gu B, <i>Computer methods in biomechanics and biomedical engineering</i>. (72.3% MODELING; 15.3% SPORT/EXERCISE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749188" target="_blank">Development, validation, and biomechanical evaluation of a high-fidelity finite element model of the forearm musculoskeletal system&#8203;.</a></b> Shang RG, Xie SY, Liao LQ, Qin GZ, Zhu XY, Wang ZH, Xie JH, Li YK, Yang H, Gu RB, <i>BMC musculoskeletal disorders</i>. (93.9% MODELING; 2.6% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41759187" target="_blank">Human-inspired bipedal locomotion: from neuromechanics to mathematical modelling and robotic applications.</a></b> Koseki S, Hayashibe M, Owaki D, <i>Journal of the Royal Society, Interface</i>. (51.0% MODELING; 32.4% ROBOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41758847" target="_blank">Simulating Muscle-Level Energetic Cost When Humans Walk With a Passive Biarticular Thigh Exosuit.</a></b> Firouzi V, Song S, von Stryk O, Seyfarth A, Sharbafi MA, <i>IEEE transactions on neural systems and rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society</i>. (55.4% MODELING; 37.8% GAIT/LOCOMOTION)<br />
<br />
<br />
<span style="font-size:16px"><b>*MUSCLE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41784165" target="_blank">Shaping Smooth Muscle Forces: The Role of Preconditioning in Urinary Smooth Muscle.</a></b> Kiem S, Papenkort S, Borsdorf M, B&amp;ouml;l M, Siebert T, <i>Journal of applied physiology (Bethesda, Md. : 1985)</i>. (97.3% MUSCLE; 1.0% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41781318" target="_blank">Older adult residents in disaster public housing had lower muscle function and mobility compared to non-residents: A cross-sectional study.</a></b> Yamashita T, Kato G, Kosuge Y, Fujino T, Ohkubo T, Seto H, Ochi E, <i>Journal of orthopaedic science : official journal of the Japanese Orthopaedic Association</i>. (39.2% ERGONOMICS; 31.4% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41764752" target="_blank">Development of Muscle Function in Children with Achondroplasia Under Vosoritide Treatment: A Retrospective Single-Centre Observational Study.</a></b> Reincke S, Stasek S, Jungh&amp;auml;nel-Welzing S, Semler O, Rehberg M, Duran I, Hoyer-Kuhn H, <i>Journal of musculoskeletal &amp;amp; neuronal interactions</i>. (98.1% MUSCLE; 0.4% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41775054" target="_blank">Quantification of muscle morphology and stiffness in spastic hemiplegic cerebral palsy versus typically developing controls using magnetic resonance elastography.</a></b> Caban-Rivera DA, Johnson CL, Church C, Smith DR, Shrader MW, Lee S, Montufar Wright PE, Kazmi F, Trionfo A, Howard JJ, <i>Clinical biomechanics (Bristol, Avon)</i>. (99.1% MUSCLE; 0.2% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749787" target="_blank">Muscle Fatigue in Dynamic Movement: Limitations and Challenges, Experimental Design, and New Research Horizons.</a></b> Daniel N, Ma&#322;achowski J, Sybilski K, B&#322;a&#380;kiewicz M, <i>Bioengineering (Basel, Switzerland)</i>. (96.7% MUSCLE; 1.7% METHODS)<br />
<br />
<br />
<span style="font-size:16px"><b>*NEURAL*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41784413" target="_blank">Humans can learn bimodal priors in complex sensorimotor behaviour.</a></b> Zahno S, Beck D, Hossner EJ, Kording K, <i>Proceedings. Biological sciences</i>. (67.7% NEURAL; 12.7% VISUAL/VESTIBULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41778400" target="_blank">A Microfluidic Cell Culture Platform for Modeling Aligned Peripheral Nerve Bundle, Connection, and Myelination.</a></b> Jin A, Shim SW, Shim M, Lee YK, Hong J, Roh D, Ko J, Hyung S, Oh SB, Jeon NL, <i>Advanced healthcare materials</i>. (43.0% NEURAL; 26.3% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41772280" target="_blank">Redefining the central pattern generator for vertebrate locomotion.</a></b> El Manira A, <i>Nature reviews. Neuroscience</i>. (79.2% NEURAL; 10.8% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41761485" target="_blank">Olanzapine Attenuates the Morphine-Induced Conditioned Place Preference: The Involvement of the D2-Like Dopamine Receptors.</a></b> Firozjaei FR, Pour ASZ, Ghavipanjeh G, Ghaderi A, Haghparast A, Ardjmand A, Banafshe HR, <i>Brain and behavior</i>. (38.2% NEURAL; 8.6% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41762245" target="_blank">A spiking neural network model for fractional proprioceptive encoding of limb posture and movement in insects.</a></b> van der Veen T, Cohen Y, Chicca E, D&amp;uuml;rr V, <i>Biological cybernetics</i>. (78.8% NEURAL; 13.8% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41760587" target="_blank">Chronic methanol exposure induces cognitive impairment and Alzheimer's-like pathology in rhesus monkeys.</a></b> Li H, Shi C, Li K, Fu X, Lyu Y, Xu Y, Han Y, Liang W, Chuan Q, Zhang L, <i>Animal models and experimental medicine</i>. (43.8% NEURAL; 20.0% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41755658" target="_blank">Nerve and Tendon Transfers for Upper Extremity Reconstruction in Spinal Cord Injury Patients: A Systematic Review.</a></b> Shekouhi R, Darabi H, Chen X, Lee KI, Sohooli M, Schwartzberg HG, Maier MA, Chim H, <i>The journal of hand surgery Asian-Pacific volume</i>. (29.3% NEURAL; 17.6% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41775974" target="_blank">Control vs. salience: a new axis of circadian brain-body organization.</a></b> Demers O, Ghaffari S, Li C, Butler R, <i>Npj biological timing and sleep</i>. (71.4% NEURAL; 10.0% POSTURE/BALANCE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41756766" target="_blank">Correction: Bioenergetic-related gene expression in the hippocampus predicts internalizing vs. externalizing behavior in an animal model of temperament.</a></b> Hebda-Bauer EK, Hagenauer MH, Munro DB, Blandino P, Meng F, Arakawa K, Stead JDH, Chitre AS, Ozel AB, Mohammadi P, Watson SJ, Flagel SB, Li J, Palmer AA, Akil H, <i>Frontiers in molecular neuroscience</i>. (35.7% NEURAL; 11.9% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41751822" target="_blank">Opuntia ficus-indica (L.) Mill. Extract: From Chemical Characterization to Inflammatory Profiling and Its Potential Effects in a Zebrafish Model of Spinal Cord Injury-A Morphological and Molecular Study.</a></b> Pansera L, Pagliari S, Mhalhel K, Aragona M, Sicari M, Galeano M, Colonna MR, Levanti M, Laur&amp;agrave; R, Abbate F, Cicero N, Labra M, Rastegar S, German&amp;agrave; A, Campone L, Montalbano G, <i>International journal of molecular sciences</i>. (52.3% NEURAL; 7.5% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41753019" target="_blank">Associations Between Sleep Deprivation, Circadian Gene Expression, Depressive Symptoms, and Psychomotor Performance-Preliminary Results.</a></b> Ditmer M, Gabryelska A, Wojtera A, Tarasiuk-Zawadzka A, Binienda A, Turkiewicz S, Karuga FF, Bia&#322;asiewicz P, Fichna J, Strzelecki D, Sochal M, <i>Journal of clinical medicine</i>. (34.9% NEURAL; 9.8% POSTURE/BALANCE)<br />
<br />
<br />
<span style="font-size:16px"><b>*ORTHOPAEDICS (SPINE)*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41756189" target="_blank">Anterior zero-profile V-osteotomy: A safe and effective approach for segmental and localized-type cervical OPLL.</a></b> Shen P, Huo X, Yuan Y, Gao S, Dong X, Miao J, <i>Journal of orthopaedics</i>. (96.9% ORTHOPAEDICS/SPINE; 2.0% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41780071" target="_blank">Cervical Implant Fixation: A Topical Review of Techniques and their Importance.</a></b> Halder S, Biswas P, Biswas SK, Malas A, Biswas JK, <i>Biomedical physics &amp;amp; engineering express</i>. (97.5% ORTHOPAEDICS/SPINE; 1.6% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41778304" target="_blank">Is Two Better Than One? Pelvic Fixation Strategies in Neuromuscular and Early-onset Scoliosis: A Comparative Analysis of S1S2-iliac and S2-iliac Screws.</a></b> Obeid T, Espandar R, Rambo A, Upadhyay K, Epstein C, Larwa J, Lacoste K, Doshi M, Neal KM, <i>Journal of pediatric orthopedics</i>. (95.5% ORTHOPAEDICS/SPINE; 3.8% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41783554" target="_blank">Radiographic Sagittal Alignment and Neurological Changes Following Conservative Cervical Structural Rehabilitation After Motor Vehicle Collision in a Patient With Pre-existing Scoliosis: A Case Report.</a></b> Dick JM, Paige P, <i>Cureus</i>. (60.3% ORTHOPAEDICS/SPINE; 21.6% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41777587" target="_blank">Chondroitinase Versus Papain Digestion Leads to Different Outcome for In Vitro Simulation of Degenerated Discs.</a></b> Jansen JU, Teixeira GQ, Salzer E, Vernengo A, Grad S, Ito K, Neidlinger-Wilke C, Wilke HJ, <i>JOR spine</i>. (73.6% ORTHOPAEDICS/SPINE; 18.6% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41761324" target="_blank">Shaping the future of spinal implants: advancing bioactive composites with 3D printing for next-generation surgical care.</a></b> Kumar N, Rangaswamy N, Hui SJ, Lee LYJ, Jeyachandran P, Wang N, Fuh JYH, Kumar AS, Hallinan JTPD, Vellayappan BA, <i>Journal of orthopaedic surgery and research</i>. (86.6% ORTHOPAEDICS/SPINE; 5.9% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41768000" target="_blank">Biomechanical Comparisons of Two Types of Tuina in Treating Lumbar Disc Herniation: A Finite Element Analysis.</a></b> Huang FF, Qiu MW, Wu WM, Liu JJ, Zhao Q, Zhao SY, Lu MQ, Yan ZX, Li JQ, Liu X, Li YK, Wong AYL, Fan ZY, <i>Pain research &amp;amp; management</i>. (89.0% ORTHOPAEDICS/SPINE; 4.1% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41758241" target="_blank">Preferential sacral fracture sites in fragility fractures of the pelvis type IVb and comparison of internal fixation methods: CT-based morphological mapping and finite element analysis.</a></b> Naniwa S, Yorimitsu M, Hasegawa T, Ando T, Okuda R, Fukuoka S, Mochizuki Y, Yamakawa Y, Nakahara R, Hanakawa S, Ozaki T, <i>European journal of trauma and emergency surgery : official publication of the European Trauma Society</i>. (80.1% ORTHOPAEDICS/SPINE; 8.3% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41748287" target="_blank">Comparative Outcomes of Anterior Cervical Discectomy and Fusion Vs Hybrid Surgery in Multilevel Cervical Degenerative Disc Disease: A Systematic Review and Meta-analysis.</a></b> Sanchez MM, Teo THL, Dinesh SK, Yeo A, Jiang L, Enriquez A, Janssen M, Chew Z, <i>International journal of spine surgery</i>. (97.7% ORTHOPAEDICS/SPINE; 1.5% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41753544" target="_blank">Finite Element Analysis of Anterior Odontoid Screw Fixation for Type II Odontoid Fractures.</a></b> Gonz&amp;aacute;lez-Vargas PM, Mill&amp;aacute;n A, Thenier-Villa JL, Badaoui A, Conde C, Pou J, Riveiro A, <i>Materials (Basel, Switzerland)</i>. (84.3% ORTHOPAEDICS/SPINE; 10.7% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749778" target="_blank">Advances in the Measurement and Interpretation of Intervertebral Motion in the Lumbar Spine: A Scoping Review.</a></b> Breen A, Breen A, Branney J, du Rose A, Nematimoez M, <i>Bioengineering (Basel, Switzerland)</i>. (91.5% ORTHOPAEDICS/SPINE; 5.3% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749773" target="_blank">Parametric Finite Element Evaluation of Load Redistribution Under Progressive Lumbar Disc Degeneration.</a></b> Ardatov O, Fernandes SR, Kilikevi&#269;ius A, Alekna V, <i>Bioengineering (Basel, Switzerland)</i>. (67.4% ORTHOPAEDICS/SPINE; 30.3% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749767" target="_blank">A Review of Motion-Preserving Cervical Spinal Implants and Fusion Constructs.</a></b> Merem I, Vasquez R, Wise J, Beaulieu E, Patel S, Lin M, Pires G, Vrionis FD, <i>Bioengineering (Basel, Switzerland)</i>. (98.7% ORTHOPAEDICS/SPINE; 0.7% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41784195" target="_blank">Finite Element Analysis of Mechanical Stress Distribution in Titanium and PEEK Rod Constructs for Isthmic L5-S1 Spondylolisthesis.</a></b> Avci &#304;, Yavuz AY, Abdioglu AA, Paksoy K, <i>Turkish neurosurgery</i>. (94.5% ORTHOPAEDICS/SPINE; 2.9% MODELING)<br />
<br />
<br />
<span style="font-size:16px"><b>*ORTHOPAEDICS (SURGERY)*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41783334" target="_blank">Comparison of High-tensile Suture and 16-gauge Wire for Prophylactic Fixation in Total Hip Arthroplasty: A Biomechanical Study.</a></b> Guarin Perez SF, Zhao G, Tsukamoto I, Labott JR, Restrepo DJ, Tai TW, Hooke AW, Zhao C, Sierra RJ, <i>Arthroplasty today</i>. (87.0% ORTHOPAEDICS/SURGERY; 7.2% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41779269" target="_blank">Does latissimus dorsi tendon transfer provide a normal scapular rhythm and external rotation strength in posterosuperior massive irreparable rotator cuff tears? A kinematic analysis in a retrospective cohort.</a></b> Calvo C, Fiumana G, Brigo A, Ruggiero ED, Bonfatti R, Don&amp;agrave; A, Micheloni GM, Giorgini A, Tarallo L, Porcellini G, <i>Journal of orthopaedics and traumatology : official journal of the Italian Society of Orthopaedics and Traumatology</i>. (46.1% ORTHOPAEDICS/SURGERY; 17.9% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41778985" target="_blank">Minimally Invasive, More Informed?: Commentary on an article by Majd Mzeihem, MD, et al.: &quot;Fluoroscopy-Guided Lateral Tibial Plateau Fracture Fixation with and without Needle Arthroscopy. A Biomechanical and Reduction-Quality Comparison&quot;.</a></b> Dahmen J, Janssen SJ, Kerkhoffs GMMJ, <i>The Journal of bone and joint surgery. American volume</i>. (95.1% ORTHOPAEDICS/SURGERY; 1.3% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41776520" target="_blank">Biomechanical comparison of different fixation methods for tibiofibular syndesmosis injuries: a finite element analysis study.</a></b> Karaca H, Esenyel CZ, Ugur L, Aytekin K, Kurt E, Demir T, <i>BMC musculoskeletal disorders</i>. (53.0% ORTHOPAEDICS/SURGERY; 35.8% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41783081" target="_blank">Knotted Versus Knotless Suture Bridge Repair of the Proximal Rectus Femoris: A Biomechanical Study.</a></b> Nishimura H, Mukohara S, Kataoka K, Hollenbeck JFM, Drumm A, Cortes N, Buchalter W, Uchida S, Philippon MJ, <i>Orthopaedic journal of sports medicine</i>. (61.0% ORTHOPAEDICS/SURGERY; 23.0% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41777437" target="_blank">Why Your Patient May Need a Bankart Repair Plus Remplissage.</a></b> Momaya AM, Broussard JP, Powell E, <i>International journal of sports physical therapy</i>. (53.3% ORTHOPAEDICS/SURGERY; 23.2% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41772414" target="_blank">A Biomechanical Comparison of Gluteus Medius Repair With and Without Iliotibial Band Autograft Augmentation.</a></b> Perleberg TD, Featherall JT, Calibo TK, Hollenbeck J, Blankenship M, Hapa O, Godin JA, Philippon MJ, <i>The American journal of sports medicine</i>. (51.3% ORTHOPAEDICS/SURGERY; 28.1% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41770050" target="_blank">Systematic review of the effect of insertion torque on locking screw performance.</a></b> Fletcher JWA, <i>EFORT open reviews</i>. (83.6% ORTHOPAEDICS/SURGERY; 4.3% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41770047" target="_blank">Partial lateral patellar facetectomy in primary total knee arthroplasty: a common addition with limited support.</a></b> Horteur C, Salvi A, Girard P, Gaulin B, Rubens Duval B, Rieussec C, Morcos MW, <i>EFORT open reviews</i>. (72.9% ORTHOPAEDICS/SURGERY; 20.0% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41771754" target="_blank">Similar Outcomes for Fixation of Undisplaced Intracapsular Hip Fractures with Either Cannulated Screws or Dynamic Hip Screws in 255 Patients: A Comparison of Propensity-Matched Groups.</a></b> Shardlow B, Nocun W, Khater A, Nightingale J, Gordon C, Norrish A, <i>Hip &amp;amp; pelvis</i>. (90.9% ORTHOPAEDICS/SURGERY; 1.9% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41763529" target="_blank">Suture button compared with ventral augmentation in unstable syndesmotic injuries : does it affect the quality of distal tibiofibular joint reduction?</a></b> Scheuer A, Spindler FT, B&amp;ouml;cker W, Polzer H, Baumbach SF, <i>The bone &amp;amp; joint journal</i>. (59.0% ORTHOPAEDICS/SURGERY; 17.7% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41762191" target="_blank">Stability of Distal Ulnar Neck Fractures During Cyclic Loading Following Intramedullary Threaded Nail Fixation or Volar-Locking Plate and Screw Fixation: A Cadaveric Biomechanical Comparison.</a></b> Jeffs AD, Allen AD, Radhakrishna R, Himmelberg SM, Zaidi ZS, Knoll GM, Patterson JM, Cole JH, Draeger RW, <i>The Journal of hand surgery</i>. (69.5% ORTHOPAEDICS/SURGERY; 22.1% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41780466" target="_blank">LC2 screws may significantly increase fixation stability when compared with plate osteosynthesis in type IIIa fragility fractures of the pelvis: A biomechanical comparison study.</a></b> Kim JW, Kim SM, Han SR, Lee JH, Zderic I, Richards RG, Gueorguiev B, Oh CW, <i>Injury</i>. (83.8% ORTHOPAEDICS/SURGERY; 7.1% ORTHOPAEDICS/SPINE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41758400" target="_blank">Biomechanical aspects in the treatment of periprosthetic humeral fractures.</a></b> Schmitz SI, Heilmann L, Mader K, M&amp;uuml;ller M, Klatte TO, Behrens A, <i>Unfallchirurgie (Heidelberg, Germany)</i>. (80.8% ORTHOPAEDICS/SURGERY; 9.2% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749321" target="_blank">Effect of femoral component design and quadriceps load on patellofemoral kinematics after total knee arthroplasty: an in vitro cadaveric study.</a></b> Maioli V, Diquattro E, Conconi M, Castagnini F, Traina F, Sancisi N, Cristofolini L, <i>Knee surgery &amp;amp; related research</i>. (49.5% ORTHOPAEDICS/SURGERY; 29.1% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41768211" target="_blank">The 50 Most Cited Original Studies on Acromioclavicular Joint Reconstruction: A Bibliometric and Study-Quality Analysis.</a></b> Chen H, Muench L, Pfarrmaier A, Lacheta L, Scheiderer B, Siebenlist S, Vieider RP, <i>Orthopaedic journal of sports medicine</i>. (62.4% ORTHOPAEDICS/SURGERY; 25.6% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41759818" target="_blank">Biomechanical Evaluation of Primary Stability in Revision Latarjet Surgery Using Malleolar Screws Following Failure of All-Suture Cerclage Fixation.</a></b> Bayer TP, Nolte AK, Panzram B, Raiss P, Wegmann K, Kretzer JP, B&amp;uuml;lhoff M, Jaeger S, <i>Journal of shoulder and elbow surgery</i>. (92.3% ORTHOPAEDICS/SURGERY; 2.7% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749792" target="_blank">Limb-Salvage Reconstruction of the Proximal Humerus Using Patient-Specific 3D-Printed PEEK Implants: A Midterm Clinical Study.</a></b> Thanh TD, Huy LD, Trung ND, Anh LN, Thang VD, Phuc LH, Hung LT, Nang VSQ, Hieu PT, Sang NTQ, Quang DM, Dung TT, <i>Bioengineering (Basel, Switzerland)</i>. (74.7% ORTHOPAEDICS/SURGERY; 9.7% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41752971" target="_blank">Biomechanical Comparison of Three Fixation Constructs for Tile Type C1.2 Pelvic Ring Fractures: A Finite Element Analysis.</a></b> Carp AC, Veliceasa B, Awad D, Filip A, Per&#539;ea M, Forna N, Puha B, T&amp;icirc;rnovanu &#536;D, S&amp;icirc;rbu MT, Pav&#259;l SD, S&amp;icirc;rbu PD, <i>Life (Basel, Switzerland)</i>. (44.1% ORTHOPAEDICS/SURGERY; 28.3% ORTHOPAEDICS/SPINE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41753106" target="_blank">Comparison of the Biomechanical Stability of Two Fix-and-Replace Techniques in an Acetabular Fracture Model with Pelvic Discontinuity.</a></b> Beckmann NA, Ernst RS, Jakobs S, M&amp;uuml;ller M, Kuttner H, Aebi T, Bastian JD, <i>Journal of clinical medicine</i>. (89.2% ORTHOPAEDICS/SURGERY; 1.6% VETERINARY/AGRICULTURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41753093" target="_blank">Validation of an Intraoperative Visual Assessment System Based on Bone Mechanical Properties for Selection of Cementless Total Knee Arthroplasty in an Asian Cohort.</a></b> Lee DH, Kwak DS, Kim YD, Lee SH, Cho N, Koh IJ, <i>Journal of clinical medicine</i>. (53.4% ORTHOPAEDICS/SURGERY; 22.0% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41752721" target="_blank">Biomechanical Comparison of Three Different Fixation Methods for Unstable Basicervical Intertrochanteric Fractures Using a Novel Cephalomedullary Nail.</a></b> Lee KJ, Hwang KT, Kook I, Lee SW, Lee SJ, Yoon JH, Yoo JH, <i>Medicina (Kaunas, Lithuania)</i>. (79.7% ORTHOPAEDICS/SURGERY; 9.3% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41769420" target="_blank">Contrasting Outcomes in Chronic Monteggia Fracture Management: Key Lessons From Two Pediatric Cases.</a></b> Radzuan N, Ismail II, Kamisan N, <i>Cureus</i>. (78.4% ORTHOPAEDICS/SURGERY; 15.3% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749702" target="_blank">Time-Dependent Anchor Hole Expansion May Associate with Meniscal Extrusion After Open-Wedge High Tibial Osteotomy Combined with Medial Meniscus Posterior Root Tear Repair and Meniscal Centralization.</a></b> Maeda Y, Nakamura R, Matsumoto K, Abe S, Ito H, <i>Bioengineering (Basel, Switzerland)</i>. (50.3% ORTHOPAEDICS/SURGERY; 37.7% JOINT/CARTILAGE)<br />
<br />
<br />
<span style="font-size:16px"><b>*POSTURE/BALANCE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41750716" target="_blank">Validation of the Posture Analyzing and Virtual Reconstruction (PAViR) System for Measuring the Hip-Knee-Ankle Angle Using 2D Photogrammetry and Computer Vision.</a></b> Aguilar Esteban C, Martinez Mendoza E, Martinez Navarro C, Torralba Estelles J, <i>Diagnostics (Basel, Switzerland)</i>. (50.2% METHODS; 39.4% POSTURE/BALANCE)<br />
<br />
<br />
<span style="font-size:16px"><b>*PROSTHETICS/ORTHOTICS*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41772719" target="_blank">Functional and biomechanical effects of a self-locking ankle orthosis versus rigid taping: an observational crossover study.</a></b> Aguilera C, Bellido M, Serrano &amp;Aacute;M, Moreno JS, Morales CR, Almaz&amp;aacute;n-Polo J, Cleland JA, Cotteret C, <i>BMC sports science, medicine &amp;amp; rehabilitation</i>. (97.4% PROSTHETICS/ORTHOTICS; 0.8% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41763249" target="_blank">Biomechanical study of screw-supported prosthesis in acetabular revision.</a></b> Wan Q, Xu M, Chen H, Xue H, Yuan B, Zhou B, Han Q, Zhao X, Wang J, <i>Bone &amp;amp; joint research</i>. (80.3% PROSTHETICS/ORTHOTICS; 12.6% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749741" target="_blank">Development and Biomechanical Evaluation of a Modular Knee Prosthesis: From Conceptual V1 Design to an Improved V3 Model.</a></b> Abdreshova S, Akhmejanov S, Ozhikenov K, Zhetenbayev N, Nurgizat Y, Bizhanov D, Sultan A, Ayazbay AA, Zharmagambetova M, Sergazin G, <i>Bioengineering (Basel, Switzerland)</i>. (98.9% PROSTHETICS/ORTHOTICS; 0.3% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41753813" target="_blank">Long Short-Term Memory Network for Contralateral Knee Angle Estimation During Level-Ground Walking: A Feasibility Study on Able-Bodied Subjects.</a></b> Al-Rashdan A, Amari H, Al-Smadi Y, <i>Micromachines</i>. (55.3% PROSTHETICS/ORTHOTICS; 24.6% GAIT/LOCOMOTION)<br />
<br />
<br />
<span style="font-size:16px"><b>*REHABILITATION*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41783688" target="_blank">Movement smoothness matters: The missing piece in the functional assessment of rotator cuff patients. Insights from a stereophotogrammetry experimental study.</a></b> Mancini L, De Sanctis L, Schena E, D'Hooghe P, de Sire A, Mancuso M, Nazarian A, Carnevale A, Longo UG, <i>Journal of experimental orthopaedics</i>. (49.5% REHABILITATION; 13.6% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41775671" target="_blank">Advances in Gait Alterations and Rehabilitation After Anterior Cruciate Ligament Reconstruction: Biomechanics and Emerging Technologies.</a></b> Yu T, Liao H, Huo Z, Huang Z, Li J, Fang X, <i>Orthopaedic surgery</i>. (80.5% REHABILITATION; 6.5% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41775531" target="_blank">The moderating role of agency and belonging in the healthy aging framework: a momentary assessment study among older adults in Hong Kong.</a></b> Guan X, Chan OF, Zhong Y, Zhou J, Liang P, Lu S, Guo Y, Liu Y, Luo H, Wong GHY, Lum TYS, <i>Aging &amp;amp; mental health</i>. (24.3% REHABILITATION; 14.0% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41774664" target="_blank">Model-Driven Design of Electrical Stimulation Therapy Improves Gait Dynamics in Individuals With Limb Amputations.</a></b> Hu J, Ding Z, Bian Q, Alsayed K, Bull AM, Singleton C, Ramamurthy PH, <i>IEEE transactions on bio-medical engineering</i>. (59.6% REHABILITATION; 18.7% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41770383" target="_blank">Early postoperative recovery of gait efficiency after lumbar decompression: three-month quantitative biomarker assessment.</a></b> Haddas R, Romiyo P, Shu Y, Rubery P, Rogerson A, Puvanesarajah V, <i>European spine journal : official publication of the European Spine Society, the European Spinal Deformity Society, and the European Section of the Cervical Spine Research Society</i>. (44.7% REHABILITATION; 22.0% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41761462" target="_blank">Whole Body Vibration Acutely Decreases Medial Tibiofemoral Contact Force During Walking Following Anterior Cruciate Ligament Reconstruction.</a></b> Dennis JD, Edison AE, Birchmeier TB, Pietrosimone BG, Blackburn JT, <i>Journal of orthopaedic research : official publication of the Orthopaedic Research Society</i>. (64.0% REHABILITATION; 21.6% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41761632" target="_blank">The Association Between 24-h Movement Behaviours and Fundamental Motor Skills of Children With Intellectual Disabilities Based on Compositional Data Analyses.</a></b> Liu Y, Roswal G, Ding J, Yuan Y, <i>Journal of intellectual disability research : JIDR</i>. (40.8% GAIT/LOCOMOTION; 31.5% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41761497" target="_blank">Effects of yoga on pain, physical function, and biomechanical/impairment outcomes in knee osteoarthritis: A systematic review and three-level meta-analysis.</a></b> Zhou J, Jawis MN, Li S, <i>Journal of back and musculoskeletal rehabilitation</i>. (50.4% REHABILITATION; 28.8% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41758902" target="_blank">Transcranial direct current stimulation with Bosu-ball training increases cortical activation and improves ankle-foot function among individuals with chronic ankle instability: A randomized controlled trial.</a></b> Luo X, Shen P, Huang X, Gao H, Ge Y, Dong Z, Chen Y, Fong DTP, Song Q, <i>PloS one</i>. (74.4% REHABILITATION; 14.2% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41759809" target="_blank">Outcome Measure Frequency in Stroke Rehabilitation Lower Extremity Randomized Controlled Trials and its Correlation with Research and Clinical Practice Recommendations.</a></b> Teasell R, Flores-Sandoval C, Mehrabi S, Fleet JL, Payne MW, Viana R, Peters S, Bowman A, Safaei-Qomi MR, <i>Archives of physical medicine and rehabilitation</i>. (76.6% REHABILITATION; 21.1% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749648" target="_blank">Promoting Functional Mobility in Individuals with Non-Ambulatory Cerebral Palsy: A Scoping Review of the MOVE Programme.</a></b> Schomerus R, Paleg GS, Livingstone RW, Dawal B, B&amp;auml;chler L, <i>Children (Basel, Switzerland)</i>. (71.7% REHABILITATION; 25.2% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41777524" target="_blank">Effects of rTMS over the contralateral M1 combined with NMES on pain and functional mobility in primary frozen shoulder: study protocol for a 4-week double-blind, randomized, sham-controlled trial.</a></b> Zhou H, Zhang E, Lai M, Wang P, Zhou S, Wang Y, Xie Y, Zhao Y, <i>Frontiers in neurology</i>. (82.2% REHABILITATION; 14.7% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41767111" target="_blank">Promoting continuous rehabilitation with AI-based motion capture and biomechanical analysis: objective feedback as a catalyst.</a></b> Matsuura K, Matsuura A, Izaki M, Ishihara S, Ishihara K, Morinaga K, Kurita Y, <i>Frontiers in rehabilitation sciences</i>. (84.2% REHABILITATION; 11.0% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41755033" target="_blank">Range of Motion and Intensity Achieved During a Single Session of Targeted Robot-Assisted Exercise in Individuals with Parkinson's Disease: A Pilot Study.</a></b> Wells MD, Lamsey M, Wallenstein A, Feldman J, Kemp CC, Hackney ME, <i>Sensors (Basel, Switzerland)</i>. (89.9% REHABILITATION; 7.7% ERGONOMICS)<br />
<br />
<br />
<span style="font-size:16px"><b>*ROBOTICS*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41775071" target="_blank">Design and Control of a Bioinspired Underwater Robot with Hydrogel-Based Flexible Pectoral Fins.</a></b> Wang C, Li Z, Wang Y, Wang X, Kang H, <i>Bioinspiration &amp;amp; biomimetics</i>. (99.1% ROBOTICS; 0.3% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41772179" target="_blank">Enhanced and express workflows in robotic total hip arthroplasty: A paired accuracy study using radiographic validation.</a></b> Annapareddy A, Mulpur P, Jayakumar T, Paul D, Prasad VBN, Reddy AVG, <i>Journal of robotic surgery</i>. (31.6% ORTHOPAEDICS/SURGERY; 28.2% ROBOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41771919" target="_blank">Biomimetic actuator crafted from a relaxor ferroelectric polymer nanocomposite.</a></b> Chi H, Bai P, Zhou Z, Wang G, Xu W, Zhang Y, Qin H, Wang X, Zhang Y, Ma R, <i>Nature communications</i>. (56.5% ROBOTICS; 20.7% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41758956" target="_blank">Enable active mobility of untethered miniature robots in high-resistance multiphase medium.</a></b> Xiang Y, Jin C, Wang W, Wei Z, Liu R, Leng F, Xu C, Zhang L, Zhang J, <i>Science advances</i>. (99.5% ROBOTICS; 0.1% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41753928" target="_blank">Collective Magnetic Mesoporous Silica Nanorobots for Targeted Oral Capsaicin Delivery in Colitis Intervention.</a></b> Zhang H, Di Y, Jin L, Yang S, Li Z, Qu B, <i>Micromachines</i>. (83.2% ROBOTICS; 6.0% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41768552" target="_blank">Fluid-structure dynamics of a vibro-impact capsule robot in multiphase intestinal environments.</a></b> Wang Z, Tian J, Liu Y, Neves A, Prasad S, <i>Nonlinear dynamics</i>. (96.1% ROBOTICS; 3.1% MODELING)<br />
<br />
<br />
<span style="font-size:16px"><b>*SPORT/EXERCISE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41782391" target="_blank">Direct arm angle versus release-based proxies in Major League Baseball pitchers: a large-scale validation study.</a></b> Dillon M, Frappa N, Mastroianni MA, Ablove RA, Nicholson KF, <i>Sports biomechanics</i>. (91.5% SPORT/EXERCISE; 2.9% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41776236" target="_blank">Expertise shapes the kinematic and electromyographic characteristics of on-ice side-cutting in elite versus beginner ice hockey players.</a></b> Yu Z, Bi G, Qin Y, Wang W, Song Z, Wu F, <i>Scientific reports</i>. (99.1% SPORT/EXERCISE; 0.3% TRAUMA/IMPACT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41769927" target="_blank">The repeatability and comparison of lower limb biomechanics between suspension, step-off and vertical jump landing tasks.</a></b> Hughes G, Nguyen H, Lyle A, Thoreson L, Martinez A, <i>Sports biomechanics</i>. (86.4% SPORT/EXERCISE; 3.5% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41777442" target="_blank">An Exploratory Analysis of Countermovement Jump Variables Between Higher and Lower Performers on the LESS and Y-Balance Tests.</a></b> Pavlenco C, Talpey S, Gardner EC, <i>International journal of sports physical therapy</i>. (63.1% SPORT/EXERCISE; 23.9% POSTURE/BALANCE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41777432" target="_blank">Trunk and Lower Limb Mechanics during Multi-Directional Cutting in Dominant and Non-dominant Limbs of Athletes: Implications for Anterior Cruciate Ligament Injury Risk.</a></b> Irawan DS, Sinsurin K, Vachalathiti R, Richards J, Sonsukong A, <i>International journal of sports physical therapy</i>. (58.9% SPORT/EXERCISE; 28.7% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41766275" target="_blank">Prevalence and Biomechanical Analysis of Knee Valgus and Knee Flexion Angle during Hop Test and Step-down Test among Badminton Players.</a></b> Gaikwad SS, Pradhan DK, Mohankumar P, Pandith SN, Chaudhary MA, Dastikop CS, Prajwal H, Pati SK, Mishra A, <i>The Nigerian postgraduate medical journal</i>. (77.9% SPORT/EXERCISE; 10.2% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41763257" target="_blank">A call to arms: the absence of standardized return to play guidelines for professional rugby union players after cervical spine surgery.</a></b> McCartney C, Moore D, McDonnell J, Storey R, Kepler C, Darwish S, Butler J, <i>The bone &amp;amp; joint journal</i>. (48.5% SPORT/EXERCISE; 14.8% TRAUMA/IMPACT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41757623" target="_blank">Exploring the physical attributes of elite &amp;eacute;p&amp;eacute;e fencing: a Delphi study of world-class coaches.</a></b> Cree JA, Newman HJ, Norris LA, Oates LW, Turner AN, <i>The Journal of sports medicine and physical fitness</i>. (98.1% SPORT/EXERCISE; 0.7% VETERINARY/AGRICULTURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41764119" target="_blank">Quantifying Lower-Limb Muscle Coordination During Cycling Using Electromyography-Informed Muscle Synergies.</a></b> Ahmadi R, Rasoulian S, Heidary H, Aboodarda SJ, Uchida TK, Herzog W, Komeili A, <i>Annals of biomedical engineering</i>. (28.6% SPORT/EXERCISE; 20.1% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41765007" target="_blank">Optimizing Cycling Postures: Upper Limb Muscle Effort and Aerodynamic Performance.</a></b> Li X, Zhou P, Zhang X, <i>International journal of sports physiology and performance</i>. (75.4% SPORT/EXERCISE; 18.2% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41761568" target="_blank">Relationship Between Fundamental Motor Skill Proficiency and the Development of Overweight and Obesity in Normally Developing Children: A Systematic Review and Meta-Analysis.</a></b> Zhang D, Geok SK, Chan YM, Zaremohzzabieh Z, He S, <i>Obesity reviews : an official journal of the International Association for the Study of Obesity</i>. (63.9% SPORT/EXERCISE; 6.6% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41758294" target="_blank">Do Training Load Metrics Agree? A Comparison of Session Rate of Perceived Exertion, Physiological and Biomechanical Load in Outdoor Running.</a></b> Scheltinga BL, Buurke JH, Kok JN, Reenalda J, <i>Sports medicine - open</i>. (95.5% SPORT/EXERCISE; 2.1% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749055" target="_blank">Session and drill-specific physical characteristics of youth women's football training.</a></b> Harkness-Armstrong A, Adams T, Lewis T, Waterworth S, Lowry R, Datson N, <i>Journal of sports sciences</i>. (99.2% SPORT/EXERCISE; 0.1% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41753349" target="_blank">Range of Motion and Muscle Activity During the Front Kick in Karate Kyokushin.</a></b> Kaczmarski J, B&#322;aszczyszyn M, Borysiuk Z, <i>Journal of clinical medicine</i>. (97.5% SPORT/EXERCISE; 0.7% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41760418" target="_blank">The influence of delivery method and impact location on soccer heading kinetics in adolescent and adult females.</a></b> Smith CD, Pritchard NS, Filben TM, Miles CM, Bullock GS, Urban JE, Stitzel JD, <i>Journal of science and medicine in sport</i>. (70.8% SPORT/EXERCISE; 24.8% TRAUMA/IMPACT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41768131" target="_blank">Development of a training-oriented wearable knee joint exoskeleton for forming a scientific force application pattern in squat tasks.</a></b> Chang S, Feng F, Li Z, Yu Y, <i>Frontiers in bioengineering and biotechnology</i>. (43.7% SPORT/EXERCISE; 21.9% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41757300" target="_blank">Biomechanical determinants of proficient 3-point shooters: markerless motion capture analysis.</a></b> Cabarkapa D, Cabarkapa DV, Fry AC, <i>Frontiers in sports and active living</i>. (97.8% SPORT/EXERCISE; 0.3% TRAUMA/IMPACT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41753943" target="_blank">Mechanical Efficiency and Injury Risk in Leg Kicks Across Combat Sports: A Narrative Review of Stance, Hip Rotation, and Striking Surface Effects.</a></b> Razm SS, M&amp;aacute;rquez-Fl&amp;oacute;rez K, Caprioli L, Romagnoli C, Edriss S, Cariati I, Bonanni R, Campoli F, Tancredi V, Padua E, Annino G, <i>Healthcare (Basel, Switzerland)</i>. (93.8% SPORT/EXERCISE; 3.4% TRAUMA/IMPACT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41752909" target="_blank">Lower-Limb Biomechanical Adaptations to Exercise-Induced Fatigue During Running: A Systematic Review of Injury-Relevant Mechanical Changes.</a></b> Choudhary PK, Choudhary S, Saha S, Rajpoot YS, Ciocan VC, Nicolae-Lucian V, Pavel SI, &#536;ufaru C, <i>Life (Basel, Switzerland)</i>. (83.3% SPORT/EXERCISE; 12.1% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41783452" target="_blank">Longitudinal cohort study on subsequent injury risk in professional football players in the Qatar Stars League: a probabilistic approach using basic learning.</a></b> Tabben M, Chamari K, Alkhelaifi K, Alam T, Almulla J, <i>Biology of sport</i>. (76.8% SPORT/EXERCISE; 15.3% TRAUMA/IMPACT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41766813" target="_blank">Rotational vs. Straight Landings: Exploring Task-Specific Responses to Inform ACL-Injury Risk Screening.</a></b> Jamkrajang P, Suwanmana S, Boonkerd C, Verheul J, <i>Journal of human kinetics</i>. (64.9% SPORT/EXERCISE; 23.0% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41766805" target="_blank">Effects of Intrinsic and Orbital Angular Momentum on the Swimming Individual and Relay Starts Performance.</a></b> Navarro E, Trinidad A, Veiga S, <i>Journal of human kinetics</i>. (97.7% SPORT/EXERCISE; 0.8% GAIT/LOCOMOTION)<br />
<br />
<br />
<span style="font-size:16px"><b>*TENDON/LIGAMENT*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41768288" target="_blank">A novel tendon connector strategy to enhance early tensile strength in tendon repair.</a></b> Wang Y, Kang Y, Jiang G, Guo J, Yan L, Wang J, Yang X, Liu Z, Li J, <i>JPRAS open</i>. (86.2% TENDON/LIGAMENT; 7.0% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41782556" target="_blank">Lateral Extra-articular Tenodesis Provides Superior Stability in ACL Reconstruction With Posterolateral Tibial Fracture.</a></b> Th&amp;uuml;rig G, Braun N, Herbst E, Deichsel A, Klimek M, Raschke MJ, Kittl C, <i>The American journal of sports medicine</i>. (68.7% TENDON/LIGAMENT; 25.0% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41774566" target="_blank">Comparative outcomes of full-, partial- and superficial quadriceps tendon grafts in anterior cruciate ligament reconstruction: A PRISMA systematic review.</a></b> Jaafreh Alhabashneh AKA, Prizov AP, Lutsenko AM, Lazishvili GD, Karpenko AV, Lazko FL, Airapetov GA, Zagorodnii NV, <i>Knee surgery, sports traumatology, arthroscopy : official journal of the ESSKA</i>. (84.6% TENDON/LIGAMENT; 10.8% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41783085" target="_blank">Outcomes of Isolated Lateral Extra-articular Tenodesis for Residual Laxity Following ACL Reconstruction: A Systematic Review.</a></b> Haque O, Dragovic A, Polemidiotis M, Bouchard MD, Vivekanantha P, Slawaska-Eng D, Kay J, Hatch GFR, <i>Orthopaedic journal of sports medicine</i>. (61.5% TENDON/LIGAMENT; 27.7% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41783084" target="_blank">Gap Formation and Fixation Strength After Unicortical Quadriceps Tendon Repair with All-Suture Anchors.</a></b> Werner BC, Tejada MD, Wittstein JR, Frank RM, Evans MK, Khoury AN, Smith BL, <i>Orthopaedic journal of sports medicine</i>. (52.1% TENDON/LIGAMENT; 43.6% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41762192" target="_blank">Scapholunate Ligament Reconstruction with Suture Augmentation: a Biomechanical Analysis.</a></b> Bergen MA, Kim J, Piana LE, Cusano J, Dworkin M, Schilkowsky R, Molino J, Gil J, <i>The Journal of hand surgery</i>. (35.4% TENDON/LIGAMENT; 32.4% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41768321" target="_blank">Evaluation of a modified Bunnell suture technique with sequential tensioning for tension-offloading in Achilles tendon rupture repair: a case series and description of the surgical technique.</a></b> Aljawder A, Jaragh N, Zeidan O, Almahmeed M, <i>Journal of surgical case reports</i>. (73.7% TENDON/LIGAMENT; 20.5% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41758989" target="_blank">Deep lateral extra-articular tenodesis (LET) is associated with improved tibial internal rotational stability and favourable patient-reported outcomes compared with superficial LET in high-grade pivot-shift male patients undergoing quadrupled hamstring autograft ACL reconstruction.</a></b> &#350;ahbat Y, Altay N, Kocao&#287;lu B, Sever O, <i>Knee surgery, sports traumatology, arthroscopy : official journal of the ESSKA</i>. (67.2% TENDON/LIGAMENT; 24.2% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41760215" target="_blank">Effect of sacrum-stabilized iliac traction on the stress and displacement of sacroiliac joint and iliolumbar ligament.</a></b> Shi S, Xu S, Zhou X, Wang Y, Han C, Chen M, Qi J, Wang H, <i>Sheng wu yi xue gong cheng xue za zhi = Journal of biomedical engineering = Shengwu yixue gongchengxue zazhi</i>. (50.8% TENDON/LIGAMENT; 31.5% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41754703" target="_blank">Effects of Biomechanical Testing Using a Synthetic Ligament Fabricated from Polyhydroxyalkanoate Biopolyesters for Lateral Ulnar Collateral Ligament Reconstruction in Cadaver.</a></b> Wimoonchart A, Tawonsawatruk T, Panaksri A, Tanadchangsaeng N, <i>Polymers</i>. (92.1% TENDON/LIGAMENT; 5.1% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41750733" target="_blank">Sport-Specific Considerations in ACL Reconstruction: Diagnostic Evaluation and Graft Selection.</a></b> Abu Mukh A, Placella G, Jang KM, <i>Diagnostics (Basel, Switzerland)</i>. (81.3% TENDON/LIGAMENT; 9.8% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41769538" target="_blank">Comparison of Clinical and Functional Outcomes in Anterior Cruciate Ligament Reconstruction Using Peroneus Longus Tendon Versus Hamstring Tendon Autograft: A Prospective Comparative Study.</a></b> Soni S, Rehncy J, Singh D, Kumar S, Kumar H, Sahni G, Singh G, <i>Cureus</i>. (88.7% TENDON/LIGAMENT; 7.3% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41749684" target="_blank">The Role of the Individual Bundles of the Deltoid Ligament in Multidirectional Stability and Articular Contact Pressure of the Ankle Joint: A Finite Element Analysis.</a></b> Li Y, Ji X, Yang Q, Wang H, Cheng CK, <i>Bioengineering (Basel, Switzerland)</i>. (46.0% TENDON/LIGAMENT; 39.8% HAND/FINGER/FOOT/TOE)<br />
<br />
<br />
<span style="font-size:16px"><b>*TISSUE/BIOMATERIAL*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41782996" target="_blank">Designing adhesive hydrogels for oral diseases treatment.</a></b> Peng Y, Jiang Z, Xu S, He L, Jiang T, Yang Y, Xie X, Lei L, <i>Materials today. Bio</i>. (84.2% TISSUE/BIOMATERIAL; 11.0% DENTAL/ORAL/FACIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41784809" target="_blank">Mechanical characterization of human versus porcine brain tissue under large strains.</a></b> Reiter N, Nistler S, Hoffmann L, Br&amp;auml;uer L, Paulsen F, Budday S, <i>Biomechanics and modeling in mechanobiology</i>. (90.2% TISSUE/BIOMATERIAL; 3.2% TRAUMA/IMPACT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41773418" target="_blank">ROS-Responsive Spatiotemporal Delivery System Targeting Tendon-Bone Interface for Rotator Cuff Repair.</a></b> Huo Z, Wang Z, Zhang Z, Zhang H, Li F, Zhao Y, Zhang P, Li Y, Li X, Zhu Y, Jiang C, <i>ACS applied materials &amp;amp; interfaces</i>. (54.3% TISSUE/BIOMATERIAL; 31.2% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41767232" target="_blank">The osteochondral regeneration paradox: why biomimetic scaffolds are biologically superior but injectable systems dominate the clinic.</a></b> Gubert S, Moon H, Oliva N, Texid&amp;oacute; R, <i>RSC advances</i>. (47.6% TISSUE/BIOMATERIAL; 46.6% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41748833" target="_blank">Correction to: Assessing the Impact of Collagenase Clostridium histolyticum Injection on Biomechanical Properties of Uterine Fibroids and Adjacent Myometrial Tissue.</a></b> Tahermanesh K, Karimzadeh A, Allahqoli L, Anvari-Yazdi AF, Azarpira N, Shahriyaripour R, Pourbargi M, Hanjani S, Khorshidizadeh A, Alkatout I, <i>Reproductive sciences (Thousand Oaks, Calif.)</i>. (43.2% TISSUE/BIOMATERIAL; 9.6% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41755241" target="_blank">Flexible and Electrically Conductive 3D-Printed Ti3C2Tx MXene-Hydrogel Copolymers for the High-Precision Sensing of Biomechanical Processes.</a></b> Huang T, Huang Y, Mao S, Alghamdi E, Xu N, Fu Q, Sun B, Lobo CJ, Xu X, <i>Sensors (Basel, Switzerland)</i>. (75.0% TISSUE/BIOMATERIAL; 16.3% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41753063" target="_blank">Evaluation of the Relationship Between Adenomyosis and Cervical Elastography Parameters.</a></b> Kurt DS, Kurt A, Duran Kaymak S, Turhan B, &amp;Ouml;zg&amp;uuml;rl&amp;uuml;k &#304;, Keskin HL, Erdo&#287;an K, <i>Journal of clinical medicine</i>. (36.8% TISSUE/BIOMATERIAL; 10.7% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41757330" target="_blank">Mechanical stability of new&#8209;generation meshes for M3 inguinal hernia repair: experimental pressure chamber testing of SWING&#8209;Mesh and 3DMax MID Anatomical Mesh.</a></b> Zamkowski M, Tomaszewska A, Lubowiecka I, Karbowski K, Putko M, &#346;mieta&#324;ski M, <i>Wideochirurgia i inne techniki maloinwazyjne = Videosurgery and other miniinvasive techniques</i>. (61.4% TISSUE/BIOMATERIAL; 22.8% ORTHOPAEDICS/SURGERY)<br />
<br />
<br />
<span style="font-size:16px"><b>*TRAUMA/IMPACT*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41774748" target="_blank">The 30-year evolution of motor vehicle road injuries: Can the future come from the shadows?</a></b> Zhao S, Lan Z, Lin J, Kan S, Jiao Y, Chen L, Du Y, <i>PloS one</i>. (98.5% TRAUMA/IMPACT; 0.7% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41770668" target="_blank">Plasma Proteomic Signatures of Coagulopathy Following Traumatic Injury: Links to Biomechanics and Patient Outcomes.</a></b> Gosselin AR, Parker O, Ali Sinan H, Hanna J, Goswami J, Tutwiler V, <i>Shock (Augusta, Ga.)</i>. (41.4% TRAUMA/IMPACT; 7.1% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41761566" target="_blank">Establishment and multifaceted characterization of a graded spinal cord injury model based on graduated impact depth.</a></b> Zhou G, Hu Y, Li Z, Han S, Li Y, Li Y, Gao J, <i>Animal models and experimental medicine</i>. (95.9% TRAUMA/IMPACT; 2.6% ORTHOPAEDICS/SPINE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41764806" target="_blank">A novel medical trauma plate using bioactive ceramic composites - design and numerical modelling analysis.</a></b> Leng B, Chen J, Tabrizian P, Su B, <i>Journal of the mechanical behavior of biomedical materials</i>. (55.6% TRAUMA/IMPACT; 11.7% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41748851" target="_blank">A Proposed Novel Neurovascular Mechanism for Brain Network Dysfunction After Traumatic Injury.</a></b> Wu T, Rifkin JA, Rayfield AC, Kroma-Wiley KA, Bassett DS, Meaney DF, <i>Annals of biomedical engineering</i>. (94.2% TRAUMA/IMPACT; 2.4% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41763005" target="_blank">What types of falls in older adults lead to head impact? An analysis of biomechanical factors based on video evidence from real-life falls.</a></b> Shishov N, Komisar V, Robinovitch SN, <i>Clinical biomechanics (Bristol, Avon)</i>. (48.4% TRAUMA/IMPACT; 43.6% POSTURE/BALANCE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41760759" target="_blank">Beyond protection: the growing role of instrumented mouthguards in sports.</a></b> Haughey JP, Tierney G, Farrell G, Needleman I, <i>British dental journal</i>. (93.8% TRAUMA/IMPACT; 4.0% SPORT/EXERCISE)<br />
<br />
<br />
<span style="font-size:16px"><b>*VETERINARY/AGRICULTURAL*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41777100" target="_blank">Effect of nocturnal feeding on locomotor activity and rumination rhythms, and sleep/wake cycle in diurnal dromedary camels.</a></b> Beniaich Y, Farsi H, Piro M, Acha&amp;acirc;ban MR, Satt&amp;eacute; A, P&amp;eacute;vet P, Challet E, El Allali K, <i>Chronobiology international</i>. (94.8% VETERINARY/AGRICULTURAL; 4.3% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41780852" target="_blank">Hoof lesion detection in lactating Holsteins: Part II. Development and on-farm validation of a predictive classification model using autonomous camera system data compared to passive surveillance.</a></b> Swartz D, Rendahl A, Cramer G, <i>Journal of dairy science</i>. (98.9% VETERINARY/AGRICULTURAL; 0.4% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41747387" target="_blank">The effect of botulinum toxin injection into the deep digital flexor muscle on foot biomechanics in healthy horses.</a></b> Slavik K, Underwood C, Lowndes C, Skelton G, van Eps A, <i>American journal of veterinary research</i>. (86.8% VETERINARY/AGRICULTURAL; 10.4% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41759771" target="_blank">Equine lameness detection and monitoring during diagnostic anaesthesia with an instrumented hoof boot.</a></b> Keller J, Hassenstein MJ, Jung K, Geburek F, <i>Veterinary journal (London, England : 1997)</i>. (98.5% VETERINARY/AGRICULTURAL; 1.0% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41771201" target="_blank">Research note: Transient behavioral effects of feed restriction in a white feathered laying hen pullet strain - Assessment of frustration and locomotor energy expenditure.</a></b> Rentsch AK, Gautamadasa S, Hanlon C, B&amp;eacute;d&amp;eacute;carrats GY, <i>Poultry science</i>. (88.6% VETERINARY/AGRICULTURAL; 9.8% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41751146" target="_blank">Spatial Variation in Turf Surface Properties of Polo Pitches: A Case Study of Different Handicaps of Argentina.</a></b> Blanco MA, Peterson ML, Cipriotti PA, Apecechea F, <i>Animals : an open access journal from MDPI</i>. (67.1% VETERINARY/AGRICULTURAL; 16.0% SPORT/EXERCISE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41751085" target="_blank">Determining Minimum Trial Numbers for Reliable Lameness Detection in Canine Kinematic Studies.</a></b> Marrero I, Santana A, Vilar JM, <i>Animals : an open access journal from MDPI</i>. (98.7% VETERINARY/AGRICULTURAL; 0.7% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41751065" target="_blank">Image-Based Analysis of Morphometric Differences Between Sea-Caught and Farmed Large Yellow Croaker (Larimichthys crocea).</a></b> Yao Y, Guo Q, Zhang S, Wu J, Chen T, Lin N, Wu Z, Zheng H, <i>Animals : an open access journal from MDPI</i>. (54.8% VETERINARY/AGRICULTURAL; 32.5% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41764985" target="_blank">White and brown layer pullets' choice of light intensity in relation to their behaviour, age and the time of day.</a></b> van der Eijk JAJ, van Niekerk TGCM, Izquierdo Garcia-Faria T, Wolthuis-Fillerup M, van Riel JW, Te Beest DE, de Jong IC, <i>Animal : an international journal of animal bioscience</i>. (91.5% VETERINARY/AGRICULTURAL; 6.7% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41756587" target="_blank">Tolerance and surface analysis of veterinary bone screws.</a></b> McCartney WT, Ober C, Mac Donald BJ, Yiapanis C, <i>Frontiers in veterinary science</i>. (96.8% VETERINARY/AGRICULTURAL; 0.8% TISSUE/BIOMATERIAL)<br />
<br />
<br />
<span style="font-size:16px"><b>*VISUAL/VESTIBULAR*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41781518" target="_blank">Comparing Efficacy and Corneal Biomechanics Between KLEx and KLEx Xtra in High Myopia: A 1-Year Prospective Randomized Study.</a></b> Cong J, Lin X, Yuan J, Li X, Liu W, Mao X, Zheng C, Liu S, Feng Q, Dong C, Feng C, Yuan Y, Dai J, <i>Ophthalmology and therapy</i>. (90.6% VISUAL/VESTIBULAR; 6.4% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41776002" target="_blank">Corneal biomechanical and tomographic outcomes following accelerated cross-linking in keratoconus: a focus on cone localization.</a></b> Asfuro&#287;lu Y, Karaca EE, Ulusoy DM, Kemer &amp;Ouml;E, <i>Japanese journal of ophthalmology</i>. (90.5% VISUAL/VESTIBULAR; 6.8% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41780837" target="_blank">Piezo2 mechanically regulate scleral fibroblast differentiation by activating relA/RhoA pathway.</a></b> Yuan Y, Li M, Yao Q, Qi Y, Ke B, <i>Experimental eye research</i>. (52.1% VISUAL/VESTIBULAR; 21.7% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41767176" target="_blank">Staging of Keratoconus Indices Based on Localized Corneal Biomechanics Stress-Strain Index Map.</a></b> Ning R, Ren Y, Xiahou J, Xu S, Li K, Wang Y, Yang X, Li Z, Zhou X, Ahmed E, Wang X, Huang J, <i>Ophthalmology science</i>. (85.8% VISUAL/VESTIBULAR; 8.6% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41758378" target="_blank">Intraocular pressure and corneal biomechanics in patients affected by myotonic dystrophy type 1.</a></b> Lanza M, Boccia R, Scutifero M, Serra L, Cangiano T, Picillo E, Fattore I, Nigro V, Simonelli F, <i>Graefe's archive for clinical and experimental ophthalmology = Albrecht von Graefes Archiv fur klinische und experimentelle Ophthalmologie</i>. (94.7% VISUAL/VESTIBULAR; 4.3% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41763592" target="_blank">Adaptive Temporal Mixture of Experts for Predicting Stiffness Metrics from the Ocular Response Analyzer and Identifying Keratoconus: Stiffness Estimates from Ocular Response Analyzer.</a></b> Zhang Y, Padhee S, Yuhas PT, Roberts CJ, Parthasarathy S, <i>American journal of ophthalmology</i>. (82.6% VISUAL/VESTIBULAR; 7.6% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41759651" target="_blank">Motion-Tracking Brillouin Microscopy for Keratoconus Suspect Identification: Comparison With Multimodal Corneal Imaging.</a></b> Zhang H, Hammoud B, Susanna BN, Dutra BAL, Scarcelli G, Randleman JB, <i>American journal of ophthalmology</i>. (84.6% VISUAL/VESTIBULAR; 9.0% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41783060" target="_blank">Impact of ultrasound cycloplasty on ocular biomechanics and refractive parameters: a comprehensive review.</a></b> Yang L, Gao J, Yan Y, Shi G, <i>Frontiers in medicine</i>. (94.5% VISUAL/VESTIBULAR; 3.8% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41753215" target="_blank">Sex Hormones and Keratoconus: In Search of the Link.</a></b> Makrypoulias I, Chatziralli I, Papaconstantinou D, Panagiotopoulos K, Kandarakis SA, Petrou P, Messerschmidt-Roth A, Droutsas K, <i>Journal of clinical medicine</i>. (91.5% VISUAL/VESTIBULAR; 5.8% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41752697" target="_blank">Occlusion Break Surge and Anterior Chamber Stability in the Intraocular Environment of Modern Phacoemulsification: A Narrative Review.</a></b> Scarfone H, Rodr&amp;iacute;guez EC, Diez J, Scarfone A, Scarfone F, <i>Medicina (Kaunas, Lithuania)</i>. (89.0% VISUAL/VESTIBULAR; 8.5% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41748119" target="_blank">Comparison of Femtosecond-assisted Laser In Situ Keratomileusis (FS-LASIK) and Keratorefractive Lenticule Extraction (KLEx) in Steep Keratometry.</a></b> Kandemir Besek N, Yal&amp;ccedil;&#305;nkaya &amp;Ccedil;ak&#305;r G, Kemer Atik B, Simsek M, Ahmet S, Liman Uzun S, Kirgiz A, <i>Klinische Monatsblatter fur Augenheilkunde</i>. (83.5% VISUAL/VESTIBULAR; 7.8% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41767924" target="_blank">Quantitative fs-laser crystalline lens softening surgery towards presbyopia treatment based on optical coherence elastography.</a></b> Zhang Z, Lv H, Zhang H, Zhang Y, Wang B, Liao Y, Zhou Z, Deng J, Bian R, Chen S, Quan T, Liu X, Wang H, Wang J, Li P, Lv X, Zeng S, <i>Biomedical optics express</i>. (93.3% VISUAL/VESTIBULAR; 4.5% TISSUE/BIOMATERIAL)<br />
<br />
<br />
<span style="font-size:16px"><b>*PICK OF THE WEEK*</b></span>&#8203;<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41775054" target="_blank">Quantification of muscle morphology and stiffness in spastic hemiplegic cerebral palsy versus typically developing controls using magnetic resonance elastography.</a></b> Caban-Rivera DA, Johnson CL, Church C, Smith DR, Shrader MW, Lee S, Montufar Wright PE, Kazmi F, Trionfo A, Howard JJ, <i>Clinical biomechanics (Bristol, Avon)</i>. (99.1% MUSCLE; 0.2% METHODS)&#8203;]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/literature-update">Literature Update</category>
			<dc:creator>Roberto Castro Jr.</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/literature-update/49373-literature-update-feb-27-2026-mar-05-2026</guid>
		</item>
		<item>
			<title><![CDATA[Funded PhD (UK students only) - The Haleon Future Horizons Technology Award for Everyday Health PhD Scholarship Understanding movement, joint health and activity using &#8220;real world&#8221; data Imperial College, London, UK]]></title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49372-funded-phd-uk-students-only-the-haleon-future-horizons-technology-award-for-everyday-health-phd-scholarship-understanding-movement-joint-health-and-activity-using-%E2%80%9Creal-world%E2%80%9D-data-imperial-college-london-uk</link>
			<pubDate>Fri, 06 Mar 2026 14:40:36 GMT</pubDate>
			<description><![CDATA[PhD opportunity as part of the Haleon Future Horizons Technology Award for Everyday Health &#8212; focused on understanding movement, joint health and...]]></description>
			<content:encoded><![CDATA[<span style="font-family:Aptos">PhD opportunity as part of the Haleon Future Horizons Technology Award for Everyday Health &#8212; focused on understanding movement, joint health and physical activity using real&#8209;world data.</span><br />
<span style="font-family:Aptos">Hosted at Imperial College London, this project is ideal for someone passionate about<b></b>:</span><ul><li><span style="font-family:Aptos">Human movement &amp; biomechanics</span></li>
<li><span style="font-family:Aptos">Digital health and wearables</span></li>
<li><span style="font-family:Aptos">Data science &amp; real&#8209;world analytics</span></li>
<li><span style="font-family:Aptos">Translating research into meaningful impact for everyday health</span></li>
</ul><span style="font-family:Aptos">The successful candidate will explore how real-world, sensor-derived movement data can improve our understanding of joint health across the lifespan &#8212; with access to cutting-edge facilities and interdisciplinary supervision.</span><br />
<span style="font-family:Aptos">This is an exceptional opportunity to work at the intersection of healthcare innovation, technology, and human performance.</span><br />
<span style="font-family:Aptos">Learn more &amp; apply here:<br />
<a href="https://www.findaphd.com/phds/project/the-haleon-future-horizons-technology-award-for-everyday-health-phd-scholarship-understanding-movement-joint-health-and-activity-using-real-world-data/?p195361" target="_blank">https://www.findaphd.com/phds/projec...-data/?p195361</a></span><br />
<span style="font-family:Aptos">If you know someone who&#8217;d be a great fit &#8212; please share!</span><br />
&#8203;]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions">Jobs and Positions</category>
			<dc:creator>Matthew Banger</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49372-funded-phd-uk-students-only-the-haleon-future-horizons-technology-award-for-everyday-health-phd-scholarship-understanding-movement-joint-health-and-activity-using-%E2%80%9Creal-world%E2%80%9D-data-imperial-college-london-uk</guid>
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			<title>Postdoctoral Fellow in Machine Learning and Sports Data Science - Emory University, Flowery Branch, GA, USA</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49371-postdoctoral-fellow-in-machine-learning-and-sports-data-science-emory-university-flowery-branch-ga-usa</link>
			<pubDate>Wed, 04 Mar 2026 17:08:22 GMT</pubDate>
			<description>Description 
 
The Emory Sports Performance And Research Center (SPARC) is seeking a highly motivated postdoctoral fellow to conduct research in...</description>
			<content:encoded><![CDATA[<b>Description</b><br />
<br />
The Emory Sports Performance And Research Center (SPARC) is seeking a highly motivated postdoctoral fellow to conduct research in advanced prediction and optimization modeling. An ideal candidate would use their foundational knowledge of various modeling methods to develop and apply cutting-edge machine learning and data analysis techniques for assessing and modifying injury risk and performance in professional sports based on a large array of multimodal data sources. As part of this fellowship, they will have the opportunity to engage with a community of world-renowned scientists in the field of machine learning, musculoskeletal modeling, and human physiology to further advance their skills and grow their network for future opportunities.<br />
&#8203;<br />
<b>Minimum Qualifications:</b><ul><li>A Ph.D. in Computer Science, Data Science, Economics, Engineering, or related field</li>
<li>Excellent scientific writing ability and strong oral communication skills</li>
<li>The ability to work effectively and collegially with colleagues</li>
<li>Additional qualifications as specified by the Principal Investigator</li>
<li>Excellent scientific written and oral skills</li>
<li>Experience in developing state-of-the-art optimization and prediction models</li>
<li>Strong programming skills</li>
<li>Experience in organizing and handling large, multimodal data sets</li>
</ul><b>&#8203;Preferred Qualifications:</b><ul><li>Experience using AWS and other high performance computing platforms</li>
<li>Experience using Databricks, Snowflake, and/or similar data analytics platforms</li>
<li>Knowledge of human musculoskeletal anatomy</li>
<li>Experience developing human pose estimation and biomechanics models</li>
<li>Experience in musculoskeletal modeling/OpenSim and muscle optimization</li>
<li>Interest in improving health and performance outcomes in collegiate and professional sports</li>
</ul>&#8203;Interested candidates can apply through <a href="https://faculty-emory.icims.com/jobs/160831/postdoctoral-fellow-in-machine-learning-and-data-science/job" target="_blank"><b>THIS LINK</b></a><br />
<br />
<b>Samuel Kwak, PhD</b><br />
<i>Postdoctoral Fellow</i><br />
Emory Sports Performance And Research Center (SPARC)<br />
Emory School of Medicine, Department of Orthopaedics<br />
<a href="mailto:samuel.t.kwak@emory.edu">samuel.t.kwak@emory.edu</a>]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions">Jobs and Positions</category>
			<dc:creator>Samuel Kwak</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49371-postdoctoral-fellow-in-machine-learning-and-sports-data-science-emory-university-flowery-branch-ga-usa</guid>
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			<title>Fully funded PhD position: PhD Position in Diversity in Musculoskeletal Modelling</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49370-fully-funded-phd-position-phd-position-in-diversity-in-musculoskeletal-modelling</link>
			<pubDate>Wed, 04 Mar 2026 16:04:45 GMT</pubDate>
			<description>Fully funded PhD Position at Delft University of Technology 
More information and to apply:...</description>
			<content:encoded><![CDATA[<span style="font-family:&amp;amp"><span style="font-family:&amp;amp"><b>Fully funded PhD Position at Delft University of Technology</b><br />
More information and to apply: <a href="https://careers.tudelft.nl/job/Delft-PhD-Position-Diversity-in-Musculoskeletal-Modelling-2628-CD/1354005557/" target="_blank">https://careers.tudelft.nl/job/Delft...CD/1354005557/</a> <br />
<br />
Musculoskeletal disorders, affecting muscles, bones, joints, and associated tissues, are the leading cause of disability worldwide. Musculoskeletal models can be used for prevention and development of new treatments. Yet current models fail to capture diversity across age, sex, and ethnicity.</span></span><br />
<br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">Our ERC Starting Grant project, &#8220;Diversity Outside In&#8221;, aims to change this. We will develop an innovative methodology for generating musculoskeletal models that explicitly integrate demographic differences. By combining in-vivo measurements from large-scale human studies, cadaveric dissection for parameter verification, and a novel morphometric scaling approach, we will set a new standard for modelling the musculoskeletal system. These next-generation models will allow us to explore how diversity affects movement and musculoskeletal loading, guiding more equitable rehabilitation, prevention, and performance programs.</span></span><br />
<br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">The PhD candidate will serve as the modelling expert within the project team, developing a pipeline for creating subject-specific models and building an open-source database to enhance diversity in musculoskeletal modelling.</span></span><br />
<br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">As a PhD candidate in this project, you will:</span></span><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">&#8226; Develop a musculoskeletal modelling pipeline to create subject-specific models from in-vivo data.</span></span><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">&#8226; Build an open-source database of healthy subject-specific models to enhance diversity in MSK modelling.</span></span><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">&#8226; Collaborate within a team to organize and manage a large-scale human participant study, including recruitment and logistics.</span></span><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">&#8226; Conduct validation measurements in the lab, including human motion capture, dynamometry, and fluoroscopy.</span></span><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">&#8226; Use predictive simulations to study the effects of demography on model outcomes.</span></span><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">&#8226; Work closely with an interdisciplinary team of experts in biomechanics, anatomy, medical imaging, clinical sciences, and sports coaching.</span></span><br />
<br />
<span style="font-family:&amp;amp">This PhD is ideally suited to a candidate who enjoys combining cutting-edge measurement technologies with computational modelling, hands-on experimental work, and working with people.</span>&#8203;<br />
<br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">We are seeking an ambitious, hands-on PhD candidate who is excited to push the boundaries of musculoskeletal research. You are eager to combine experimental biomechanics and anatomy to create inclusive, next-generation musculoskeletal models that will shape the future of rehabilitation, prevention, and athletic performance.</span></span><br />
<br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">You bring:</span></span><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">&#8226; A Master&#8217;s degree in Biomechanical Engineering, Biomedical Engineering, or a related discipline.</span></span><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">&#8226; Strong experience in musculoskeletal modelling.</span></span><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">&#8226; Experience with OpenSim modelling software.</span></span><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">&#8226; Solid programming skills (e.g., Python, MATLAB) for data analysis and model development.</span></span><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">&#8226; Experience with human motion capture experiments is a pre.</span></span><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">&#8226; Ability to work independently while thriving in a collaborative, multidisciplinary team.</span></span><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">&#8226; Proficiency in English, both written and spoken.</span></span><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">&#8226; Ability to communicate effectively with study participants in Dutch.</span></span><br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">&#8226; Knowledge of Arabic, Turkish, or other languages is a plus for participant communication.</span></span><br />
<br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp">If you enjoy hands-on research, working with people, and bridging experiments with cutting-edge computational methods, this PhD is the perfect opportunity to make a real impact in inclusive musculoskeletal research.</span></span><br />
&#8194;&#8194;&#8194;&#8194;&#8194;&#8203;]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions">Jobs and Positions</category>
			<dc:creator>Eline van der Kruk</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49370-fully-funded-phd-position-phd-position-in-diversity-in-musculoskeletal-modelling</guid>
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			<title>Post-doctoral / Instructor position in Shoulder Computational Biomechanics and pre-operative planning</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49368-post-doctoral-instructor-position-in-shoulder-computational-biomechanics-and-pre-operative-planning</link>
			<pubDate>Tue, 03 Mar 2026 19:16:06 GMT</pubDate>
			<description>The Leon Root Motion Analysis Laboratory at the Hospital for Special Surgery in Manhattan, New York...</description>
			<content:encoded><![CDATA[<span style="font-family:Aptos">The Leon Root Motion Analysis Laboratory at the Hospital for Special Surgery in Manhattan, New York (<span style="color:#3498db">https://www.hss.edu/departments/rehabilitation/motion-analysis-lab</span>) is looking for a research scientist at a post-doctoral/ instructor level to work in a competitive research laboratory. The position involves design and development of sophisticated musculoskeletal models for research in shoulder biomechanics modelling and specifically in the area of shoulder joint arthroplasty. The research position will require collaboration with scientists, biomechanical engineers, and orthopaedic surgeons.</span><br />
<br />
<span style="font-family:Aptos">The position requires the ability to work both independently and as a member of a multidisciplinary research team. They must manage all aspects of research projects, including: study design and setup, complex computer simulations, manuscript and report writing, advanced data and statistical analyses.</span><br />
<br />
<span style="font-family:Aptos">Candidates must have a minimum degree of PhD in Biomechanics and preferably in shoulder biomechanics with a focus on musculoskeletal modeling. The candidate will work primarily in the development and automation of joint arthroplasty musculoskeletal models using OpenSim, Finite Element Analysis methods and integrating imaging and functional data into customized models. Experience in MATLAB and Python code development is required; previous experience in shoulder Biomechanical modelling and Finite Element Analysis is highly favorable. Additional experience in CAD (medical image processing, e.g. Mimics, Geomagic) will also be preferred.</span><br />
<br />
<span style="font-family:Aptos">Interested candidates should send their curriculum vitae (CV) to Andreas Kontaxis (<a href="mailto:KontaxisA@hss.edu">KontaxisA@hss.edu</a>).</span><br />
&#8203;]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions">Jobs and Positions</category>
			<dc:creator>Andreas Kontaxis</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49368-post-doctoral-instructor-position-in-shoulder-computational-biomechanics-and-pre-operative-planning</guid>
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			<title>2026 International Conference on Movement Science and Technology - August 14-16, 2026</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/events-and-conferences/49365-2026-international-conference-on-movement-science-and-technology-august-14-16-2026</link>
			<pubDate>Tue, 03 Mar 2026 02:10:01 GMT</pubDate>
			<description>Welcome to the 2026 International Conference of Movement Science and Technology (2026 ICMST) hosted by the Department of Health and Kinesiology at...</description>
			<content:encoded><![CDATA[Welcome to the 2026 International Conference of Movement Science and Technology (2026 ICMST) hosted by the Department of Health and Kinesiology at Purdue University!<br />
Building on the conference continuum - 2024: Beyond Boundaries: Integrating Artificial Intelligence in Movement Science and 2025: Innovating Health: Integrating Robotics and AI in Movement Science - the 2026 conference expands the focus from individual technologies to integrated, system-level solutions that promote mobility, function, and health across diverse populations, environments, and life stages.This theme reflects the recognition that movement is a foundational determinant of health, linking individuals to their physical, social, and technological environments. In alignment with Purdue University&#8217;s One Health initiative, the conference emphasizes interconnected health systems, and with Purdue Compute, it highlights the role of scalable computation, artificial intelligence, and data-driven discovery. Purdue&#8217;s academic strengths in Engineering and Health and Human Sciences provide a natural foundation for interdisciplinary exchange among scientists, engineers, clinicians, and technologists. We welcome basic, applied, computational, and translational research that demonstrates how intelligent systems can enhance mobility resilience, adaptability, and functional independence across the lifespan.<br />
Please visit the conference website for the speakers, program, registration, and abstract submission details. <a href="https://conference-fawn.vercel.app/&#8203;" target="_blank">https://conference-fawn.vercel.app/&#8203;</a>]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/events-and-conferences">Events and Conferences</category>
			<dc:creator>Li-Shan Chou</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/events-and-conferences/49365-2026-international-conference-on-movement-science-and-technology-august-14-16-2026</guid>
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			<title>Anyone successfully moved SMARTWheel software to a new computer? Activation code issue</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/general-discussion/49364-anyone-successfully-moved-smartwheel-software-to-a-new-computer-activation-code-issue</link>
			<pubDate>Mon, 02 Mar 2026 18:40:23 GMT</pubDate>
			<description>Our institution has two original SMARTWheels that were purchased years ago, and our lab is hoping to use them again for a new study. The good news is...</description>
			<content:encoded><![CDATA[Our institution has two original SMARTWheels that were purchased years ago, and our lab is hoping to use them again for a new study. The good news is that the wheels still connect to the old laptop and appear to function correctly. The bad news is that the laptop itself is ancient, and we&#8217;d really like to migrate the software to a newer machine.<br />
<br />
Since the company has been out of business for a decade (or more), we don&#8217;t have access to their activation system anymore. When we transferred the software onto a new computer, it asked for an activation code that we can&#8217;t generate.<br />
<br />
<b>Has anyone had success transferring SMARTWheel software to a newer PC?</b><br />
<br />
Any tips, driver versions, workflows, or &#8220;lessons learned&#8221; would be hugely appreciated. If anyone here has general SMARTWheel experience, I&#8217;d love to connect.<br />
<br />
Kirsten Tulchin-Francis, PhD<br />
Nationwide Children's Hospital<br />
Honda Center for Gait Analysis and Mobility Enhancement<br />
<a href="mailto:kirsten.tulchin-francis@nationwidechildrens.org">kirsten.tulchin-francis@nationwidechildrens.org</a><br />
<br />
&#8203;]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/general-discussion">General Discussion</category>
			<dc:creator>Kirsten Tulchin-Francis</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/general-discussion/49364-anyone-successfully-moved-smartwheel-software-to-a-new-computer-activation-code-issue</guid>
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			<title>REGISTRATION OPEN: May 14-15, 2026 | Annual Great Plains Biomechanics and Human Movement Variability Conferences</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/events-and-conferences/49363-registration-open-may-14-15-2026-annual-great-plains-biomechanics-and-human-movement-variability-conferences</link>
			<pubDate>Mon, 02 Mar 2026 17:19:33 GMT</pubDate>
			<description>ABSTRACT SUBMISSIONS OPEN: May 14-25, 2026 | Annual Great Plains Biomechanics and Human Movement Variability Conferences 
 
Final Abstract...</description>
			<content:encoded><![CDATA[<b>ABSTRACT SUBMISSIONS OPEN: May 14-25, 2026 | Annual Great Plains Biomechanics and Human Movement Variability Conferences</b><br />
<br />
<b><b>Final Abstract Submissions are due on March 27, 2026, with acceptance notifications on April 3, 2026</b><b>.<br />
<br />
<a href="https://commerce.cashnet.com/UNOCW?itemcode=CW-HUMMOVER" target="_blank">REGISTER HERE!</a></b></b><br />
<br />
<u><b>CONFERENCE DETAILS:</b></u><br />
<b>May 14<sup>th</sup>, 2026, 7</b><b><sup>th</sup></b><b> Annual Great Plains Biomechanics Conference</b><ul><li>Great Plains Biomechanics Keynote Speaker, Dr. Herman van der Kooi, University of Twente</li>
</ul><b>May 15<sup>th</sup>, 2026, 11</b><b><sup>th</sup></b><b> Annual Human Movement Variability Conference</b><ul><li>Human Movement Variability Barry T. Bates Keynote Speaker: Dr. Duarte Araujo, University of Lisbon</li>
</ul><br />
<b>Activity Schedule Overview:</b><ul><li>Presentations: International Keynotes, Podium sessions, Poster sessions</li>
<li>Student development sessions, socials, and awards</li>
<li>Tours of the BRB</li>
<li>More TBA!</li>
</ul><br />
<b>Registration is Open (Free for All Students)!!!</b><br />
For more information, visit our <a href="https://www.unomaha.edu/college-of-education-health-and-human-sciences/cobre/events-outreach/conference1/index.php" target="_blank">website</a>.&#8203;&#8203;&#8203;&#8203;]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/events-and-conferences">Events and Conferences</category>
			<dc:creator>Nicholas Reynolds</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/events-and-conferences/49363-registration-open-may-14-15-2026-annual-great-plains-biomechanics-and-human-movement-variability-conferences</guid>
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			<title>For Sale: Delsys Bagnoli EMG system w/ accessories</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/products-and-services/49357-for-sale-delsys-bagnoli-emg-system-w-accessories</link>
			<pubDate>Sun, 01 Mar 2026 16:29:25 GMT</pubDate>
			<description>Gently used complete 8-channel Delsys Bagnoli EMG system with 8 sensors, 6 unopened packs of 60 adhesives, and 4 unopened packs of reference...</description>
			<content:encoded>Gently used complete 8-channel Delsys Bagnoli EMG system with 8 sensors, 6 unopened packs of 60 adhesives, and 4 unopened packs of reference electrodes.</content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/products-and-services">Products and Services</category>
			<dc:creator>Josh Tome</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/products-and-services/49357-for-sale-delsys-bagnoli-emg-system-w-accessories</guid>
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			<title>LITERATURE UPDATE Feb 20, 2026 - Feb 26, 2026</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/literature-update/49356-literature-update-feb-20-2026-feb-26-2026</link>
			<pubDate>Fri, 27 Feb 2026 01:27:47 GMT</pubDate>
			<description><![CDATA[LITERATURE UPDATE 
Feb 20, 2026 - Feb 26, 2026 
 
Literature search terms: biomech* &amp;amp; locomot* 
 
Publications are classified by BiomchBERT...]]></description>
			<content:encoded><![CDATA[<span style="font-size:16px"><b>LITERATURE UPDATE</b></span><br />
Feb 20, 2026 - Feb 26, 2026<br />
<br />
Literature search terms: biomech* &amp;amp; locomot*<br />
<br />
Publications are classified by <a href="https://www.ryan-alcantara.com/projects/p88_BiomchBERT/" target="_blank">BiomchBERT</a>, a neural network trained on past Biomch-L Literature Updates. BiomchBERT is managed by <a href="https://biomch-l.isbweb.org/member/35936-jessica-murawski" target="_blank">Jessica Murawski</a> and <a href="https://biomch-l.isbweb.org/member/35931-roberto-castro-jr" target="_blank">Roberto Castro Jr.</a>, Doctoral Students at The Pennsylvania State University. Each publication has a score (out of 100%) reflecting how confident BiomchBERT is that the publication belongs in a particular category (top 2 shown). If something doesn't look right, email us at <a href="mailto:jam1798@psu.edu">jam1798@psu.edu</a> / <a href="mailto:rpc5743@psu.edu">rpc5743@psu.edu</a>.<br />
<br />
Biomch-L LinkedIn: <a href="http://www.linkedin.com/in/biomch-l-06359638a" target="_blank">www.linkedin.com/in/biomch-l-06359638a</a>.&#8203;<br />
<br />
<br />
<br />
<span style="font-size:16px"><b>*BONE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41741168" target="_blank">Long-term osteoprotective effects of IL-17A blockade with secukinumab in psoriatic arthritis: data from the PSARTROS-II study.</a></b> Schuster L, Temiz A, Mutlu MY, Tascilar K, Bayat S, Corte G, Rech J, Hueber A, Liphardt AM, Kleyer A, Simon D, Roemer F, Schett G, Fagni F, <i>RMD open</i>. (73.9% BONE; 18.1% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41721336" target="_blank">A systematic review of the biomechanical and biological impacts of ultrasound waves on skeletal tissues.</a></b> Montazeri A, Esnaasharieh M, Hajizadeh R, <i>Biomedical engineering online</i>. (87.7% BONE; 6.4% TRAUMA/IMPACT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41720279" target="_blank">Advancements in ex vivo bone biomechanics: multimodal technologies and their integration with artificial intelligence.</a></b> Unal S, Unal M, <i>Methods (San Diego, Calif.)</i>. (73.9% BONE; 22.4% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41720230" target="_blank">Mapping the evidence: Effects of malnutrition and sarcopenia on fracture healing.</a></b> Velasquez-Hammerle MV, Garcia M, Misra P, Simonian M, Nafisi N, Hedayatzadeh Razavi A, Rackauskas O, Rodriguez EK, Vaziri A, Nazarian A, <i>Bone</i>. (96.7% BONE; 1.1% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41725986" target="_blank">Quantitative evaluation of fracture healing progression in rat femurs with modal damping factor and conventional methods.</a></b> Chalikias S, Anastassopoulos G, Sarris J, Athanasopoulou S, Orkoula M, Kontoyannis C, Kostopoulos V, Psarras S, Papaioannou N, Chronopoulos E, Dontas I, Panteliou S, <i>Frontiers in bioengineering and biotechnology</i>. (91.2% BONE; 5.0% METHODS)<br />
<br />
<br />
<span style="font-size:16px"><b>*BOTANY*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41744172" target="_blank">Temperature-mediated changes in the force balance of the micropylar region adjust dormancy overcoming to seasonality in diaspores of the neotropical palm Butia capitata.</a></b> Oliveira TGS, Moura ACF, Correia LNF, Azevedo AM, Nascimento Lopes PS, Ribeiro LM, <i>Annals of botany</i>. (99.5% BOTANY; 0.1% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41714414" target="_blank">Virus-mediated changes in insect vector tolerance to a neonicotinoid insecticide.</a></b> Schmidtbauer M, Withycombe J, Han J, Neher OT, Nachappa P, <i>Scientific reports</i>. (43.5% BOTANY; 19.5% COMPARATIVE)<br />
<br />
<br />
<span style="font-size:16px"><b>*CARDIOVASCULAR/PULMONARY*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41716229" target="_blank">Development of a test protocol to study the biomechanical properties of iliac veins in comparison to the common iliac artery.</a></b> Siegl G, Rampitsch K, Sherifova S, Holzapfel GA, Sommer G, Cohnert T, <i>MethodsX</i>. (69.3% CARDIOVASCULAR/CARDIOPULMONARY; 12.0% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41736389" target="_blank">'What Do People With Long Covid Want From Healthcare Services?' A Qualitative Exploration From Lived Experience.</a></b> Rayner C, Smith N, Milne R, Mir G, de Kock J, Bakerly ND, <i>Health expectations : an international journal of public participation in health care and health policy</i>. (21.5% CARDIOVASCULAR/CARDIOPULMONARY; 12.2% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41733001" target="_blank">Research on postoperative complications following transcatheter aortic valve replacement: a bibliometric and visual analysis from 2006 to 2025.</a></b> Cui X, Ye Y, Zhou Z, Li H, Yang W, Li Q, Liu T, Guo H, Zhang B, Yu Z, <i>Acta cardiologica</i>. (82.7% CARDIOVASCULAR/CARDIOPULMONARY; 5.4% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41725389" target="_blank">Anin silicostructural approach to calcified nodules using a viscoelastic model: bridging mechanics and intervention with prolonged inflation.</a></b> Komiyama H, Shibata Y, Watanuki K, Jujo K, <i>Medical engineering &amp;amp; physics</i>. (94.4% CARDIOVASCULAR/CARDIOPULMONARY; 3.1% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41740542" target="_blank">Hemodynamic characteristics of type I Endoleak and intra-prosthetic thrombus following endovascular aneurysm repair: A computational fluid dynamics study.</a></b> Wen J, Yuan F, Li W, Huang Q, Li H, Feng H, Liu M, <i>Computer methods and programs in biomedicine</i>. (95.4% CARDIOVASCULAR/CARDIOPULMONARY; 1.8% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41719111" target="_blank">Comparative efficacy of open endarterectomy versus endovascular treatments in common femoral artery stenocclusive disease: A Bayesian hierarchical meta-analysis.</a></b> Giannakopoulos NN, Tzamtzidou S, Manou D, Nakas K, Seretis K, Tsiantoula P, Roditis K, Papaioannou V, Papas T, <i>Vascular</i>. (93.0% CARDIOVASCULAR/CARDIOPULMONARY; 1.3% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41722748" target="_blank">Regional mechanical and microstructural variations in ascending thoracic aortic aneurysms influenced by tricuspid and bicuspid aortic valves.</a></b> Ghorbani O, Persson RM, Sadeghinia MJ, Ellensen VS, Prot V, Holzapfel GA, Skallerud B, <i>Acta biomaterialia</i>. (84.4% CARDIOVASCULAR/CARDIOPULMONARY; 12.5% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41727973" target="_blank">Feel the force: Biomechanical homeostasis of the cardiovascular system.</a></b> Shi Q, Xu M, Zhu C, Shi G, <i>Journal of translational internal medicine</i>. (94.5% CARDIOVASCULAR/CARDIOPULMONARY; 2.7% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41736718" target="_blank">Physiologically Adaptive Soft Millirobot for Atraumatic Endovascular Therapy.</a></b> Le TA, Alabay HH, Singh PG, Austin MG, Urbina PAM, Misra S, Ceylan H, <i>Advanced functional materials</i>. (55.3% CARDIOVASCULAR/CARDIOPULMONARY; 28.3% ROBOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41717582" target="_blank">Mechanisms of mitral valve development and disease.</a></b> Wang E, Zhou B, <i>Frontiers in cardiovascular medicine</i>. (94.4% CARDIOVASCULAR/CARDIOPULMONARY; 2.5% TISSUE/BIOMATERIAL)<br />
<br />
<br />
<span style="font-size:16px"><b>*CELLULAR*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41746806" target="_blank">Listeria-infected macrophages promote biomechanical alterations in endothelial cell monolayers for transmigration.</a></b> Muenkel M, Wright K, Keskin E, S&amp;aacute;nchez-Rend&amp;oacute;n JC, Balmes A, Sch&amp;auml;ffer TE, Romer F, Lebtig M, Kretschmer D, Loskill P, Mostowy S, Bastounis EE, <i>Cell reports</i>. (96.8% CELLULAR/SUBCELLULAR; 1.0% CARDIOVASCULAR/CARDIOPULMONARY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41739840" target="_blank">Lysine methyltransferase Sll0171 modulates motility through PilA1 methylation in Synechocystis sp. PCC 6803.</a></b> Ling M, Zhan J, Cao G, Yuan L, Yang M, Ge F, <i>Plant physiology</i>. (94.9% CELLULAR/SUBCELLULAR; 0.9% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41722860" target="_blank">Single cell transcriptomic atlas reveals macrophage polarization dynamics and intercellular communication networks in gingival tissue of periodontitis patients undergoing orthodontic treatment.</a></b> Wang C, Wang J, <i>SLAS technology</i>. (46.3% CELLULAR/SUBCELLULAR; 29.9% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41720323" target="_blank">Uncovering the silent invaders: Dormant tumour cells in the brain microenvironment.</a></b> Ze Y, Dai R, Zhang Y, Xi Z, Xu H, <i>Critical reviews in oncology/hematology</i>. (97.7% CELLULAR/SUBCELLULAR; 1.4% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41713159" target="_blank">Effect of cancer-induced hemodynamic changes on single leukocyte dynamics in a venule using the Object-in-Fluid (OIF) module.</a></b> Zarei T, Soltani M, Aghanajafi C, <i>Computers in biology and medicine</i>. (57.5% CELLULAR/SUBCELLULAR; 24.7% CARDIOVASCULAR/CARDIOPULMONARY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41745543" target="_blank">Functionalized Biomaterials in the Investigation of the Effects of Fluid Shear Forces in the Immune Regulation of Cancer Progression and Metastasis.</a></b> Afjei R, Sikavitsas VI, <i>Journal of functional biomaterials</i>. (82.3% CELLULAR/SUBCELLULAR; 15.7% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41724186" target="_blank">Unveiling the dynamic biomechanical landscape of DNA origami nanotubes: insights from steered molecular dynamics at Varied temperatures and stretching rates.</a></b> Gorzin M, Ahmadi H, Bamdad M, Hasanzadeh Ghasemi R, <i>Journal of biomolecular structure &amp;amp; dynamics</i>. (47.9% CELLULAR/SUBCELLULAR; 31.2% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41715943" target="_blank">Mechanical Dialogues of Life and Death: How External Molecules Entry Triggers a Chromatin-Cytoskeleton Morphogenetic Duel in Cancer Cells.</a></b> Dey P, Singhania A, Kunnumakkara AB, Ghosh S, Bandyopadhyay A, <i>Advanced biology</i>. (99.2% CELLULAR/SUBCELLULAR; 0.3% TISSUE/BIOMATERIAL)<br />
<br />
<br />
<span style="font-size:16px"><b>*COMPARATIVE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41742798" target="_blank">Polarized schooling emerges in tetra species with cohesive social networks.</a></b> Swanson NE, Peterson AN, Martinez CM, McHenry MJ, <i>The Journal of experimental biology</i>. (72.9% COMPARATIVE; 18.0% EVOLUTION/ANTHROPOLOGY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41736465" target="_blank">Faster fowl fall frequently: Speed and force regulation during turning maneuvers by guinea fowl on high and low friction terrains.</a></b> Goldsmith H, Hall J, Daley MA, <i>The Journal of experimental biology</i>. (94.8% COMPARATIVE; 1.6% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41740313" target="_blank">Field evidence for interactive effects of artificial light at night and moon phase on sea urchin Paracentrotus lividus locomotion.</a></b> Ferretti M, Domenici P, Rossi F, Cecchi LB, Bellucci A, Chisci F, Maggi E, <i>Marine pollution bulletin</i>. (81.4% COMPARATIVE; 8.5% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41734469" target="_blank">Pre-cracked sutures fractured by amplified forces: mechanism of efficient eclosion in arboreal butterflies.</a></b> Wu B, Liu X, Zeng T, Lian J, Jiao X, Wu J, <i>Bioinspiration &amp;amp; biomimetics</i>. (90.9% COMPARATIVE; 3.2% BOTANY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41734736" target="_blank">The high fundamental frequency in horse whinnies is generated by an aerodynamic whistle.</a></b> Lef&amp;egrave;vre RA, Barluet de Beauchesne L, Sabarros F, Briefer Freymond S, Ramseyer A, Keller M, Reby D, Fitch WT, Briefer &amp;Eacute;F, <i>Current biology : CB</i>. (75.1% COMPARATIVE; 20.7% VETERINARY/AGRICULTURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41721909" target="_blank">Absence of pesticide avoidance during chronic colony-level exposure modifies locomotor activity in bumble bees.</a></b> Ferreira LMN, Mazzeo G, Lima MAP, <i>Ecotoxicology (London, England)</i>. (90.1% COMPARATIVE; 2.4% EVOLUTION/ANTHROPOLOGY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41716128" target="_blank">Hydration state does not influence dormancy during dry subtropical winter in the tegu lizard Salvator merianae.</a></b> Guadalupe-Silva A, de Campos DF, Hervas LS, Gargaglioni LH, B&amp;iacute;cego KC, <i>The Journal of experimental biology</i>. (82.7% COMPARATIVE; 7.4% VETERINARY/AGRICULTURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41734633" target="_blank">Glyphosate repercussions on Danio rerio: Integrating behavioral crisis, biochemical imbalance and lipidomic changes.</a></b> Bejaoui S, Ames J, Belhassen D, &amp;Uacute;beda-Manazanaro M, Soudani N, Ara&amp;uacute;jo CVM, <i>Aquatic toxicology (Amsterdam, Netherlands)</i>. (66.6% COMPARATIVE; 3.9% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41724082" target="_blank">Reflecting on 20 years of OECD 225: Advancing standardised ecotoxicological testing with Lumbriculus variegatus.</a></b> Hilgendorf J, Cardoso DN, S&amp;oslash;rensen JG, Loureiro S, <i>Aquatic toxicology (Amsterdam, Netherlands)</i>. (53.8% COMPARATIVE; 9.1% BOTANY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41745838" target="_blank">Preliminary Tests on the Effects of Atrazine Exposure on the Food-Seeking Behaviors and Locomotion of Juvenile Virile Crayfish (Faxonius virilis).</a></b> Mundahl ND, Keyport DEM, <i>Toxics</i>. (85.8% COMPARATIVE; 4.6% VETERINARY/AGRICULTURAL)<br />
<br />
<br />
<span style="font-size:16px"><b>*DENTAL/ORAL/FACIAL*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41728361" target="_blank">Finite element biomechanical comparison of bone-driven and occlusion-driven fibular flap positioning in lateral segmental mandibular reconstruction.</a></b> Filonenko D, Chepurnyi Y, Kryshchuk M, Osmanov B, Kopchak A, <i>Journal of oral biology and craniofacial research</i>. (95.1% DENTAL/ORAL/FACIAL; 1.1% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41725913" target="_blank">Finite Element Analysis of Low-Profile Reconstruction Plates for Atrophic Mandibles-Part II: A Comparison of Customized Plates with 3D Grid-Type and Conventional Designs.</a></b> Pulino B, Sader R, Louzada G, Rana M, Millesi G, de Camargo Filho GP, Guerra RC, <i>Craniomaxillofacial trauma &amp;amp; reconstruction</i>. (92.0% DENTAL/ORAL/FACIAL; 3.7% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41729868" target="_blank">Effect of reconstruction plate removal on dental implants in fibula flap mandibles: A biomechanical and clinical study.</a></b> Huang J, Chen J, Jiang J, Wang H, Yu D, Zhu H, <i>PloS one</i>. (98.4% DENTAL/ORAL/FACIAL; 0.4% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41729442" target="_blank">Biomechanical effects of attachment position and pressure ridge design on maxillary arch expansion with clear aligners: a finite element analysis.</a></b> Zheng Y, Guo R, Dai Q, Li W, Wen P, Wu M, Lin Y, <i>Progress in orthodontics</i>. (99.1% DENTAL/ORAL/FACIAL; 0.1% ORTHOPAEDICS/SPINE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41745412" target="_blank">Implant Navigation During TMJ Reconstruction: A Proof-of-Concept Study.</a></b> Bulthuis LCM, Ho JTF, Zuurbier PCM, Koutris M, Schreurs R, de Lange J, <i>Journal of personalized medicine</i>. (97.3% DENTAL/ORAL/FACIAL; 0.8% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41723951" target="_blank">Micro-CT assisted finite element analysis and functionalization of dental implants with piezoelectric coatings for improved bio-mechanical and anti-bacterial performance.</a></b> Choudhury S, Mandal PS, Das S, Changdar S, Chowdhury MP, Barui A, Dhara S, Roy S, Roy Chowdhury A, <i>Journal of the mechanical behavior of biomedical materials</i>. (96.2% DENTAL/ORAL/FACIAL; 2.0% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41720288" target="_blank">Retrospective preliminary clinical study on mandibular full-arch segmented implant-borne fixed dental prostheses developed via digital workflow: A 3-year follow-up of 14 patients.</a></b> Mijiritsky E, Steinkeller MD, Weiss E, Elad A, Kivovics M, <i>Journal of dentistry</i>. (97.0% DENTAL/ORAL/FACIAL; 1.6% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41744946" target="_blank">Impact of Taper Design on Cleaning Efficacy, Stress Generation, and Irrigant Performance: A Combined Experimental, Finite Element Analysis, and Computational Fluid Dynamics Assessment.</a></b> Maqueda CV, Navarrete N, Ram&amp;iacute;rez-Mu&amp;ntilde;oz A, Mart&amp;iacute;n-D&amp;iacute;az A, de Gregorio C, Aranguren J, Malvicini G, Grandini S, Vieira GCS, P&amp;eacute;rez AR, <i>Dentistry journal</i>. (94.6% DENTAL/ORAL/FACIAL; 1.0% TRAUMA/IMPACT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41744927" target="_blank">Influence of Chemical Composition on the Physical-Mechanical Properties of Some Experimental Titanium Alloys for Dental Implants.</a></b> Vasilescu VG, Ciocan LT, Cucuruz A, Miculescu F, Paraschiv A, Matache G, Neac&#537;u MI, Vasilescu E, Imre M, Pi&#539;uru SM, Turcule&#539; C&#536;, <i>Dentistry journal</i>. (89.7% DENTAL/ORAL/FACIAL; 7.9% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41718299" target="_blank">Fractured Full-Arch Tooth-Supported Zirconia Bridge: Thin Design, Surface Damage, and Excessive Cement Layer Thickness.</a></b> Tribst JPM, Jansen B, Pilecco RO, Kodol&amp;aacute;nyi J, Dal Piva AMO, <i>Reports (MDPI)</i>. (95.1% DENTAL/ORAL/FACIAL; 1.6% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41742469" target="_blank">Experimental and clinical study of the effect of biomechanical conditions on the effectiveness of implant-supported prosthetics.</a></b> Olesova VN, Abakarov SI, Zaslavsky RS, Olesov EE, Mikryukov VV, <i>Stomatologiia</i>. (95.0% DENTAL/ORAL/FACIAL; 2.8% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41716362" target="_blank">Digital Orthodontics: Posterior crossbite correction and arch expansion with directly 3-dimensional printed clear aligners.</a></b> Park JH, Sim M, Choi H, Choo HH, <i>Journal of clinical and experimental dentistry</i>. (98.3% DENTAL/ORAL/FACIAL; 0.2% ORTHOPAEDICS/SPINE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41728681" target="_blank">Preface to the 10th Biennial COAST Conference: AI- and Biomedicine-Driven Precision Orthodontics and Craniofacial Care.</a></b> Vora SR, Bianchi J, Frazier-Bowers SA, Lamani E, Akyalcin S, Kapila S, <i>Orthodontics &amp;amp; craniofacial research</i>. (96.2% DENTAL/ORAL/FACIAL; 0.4% TISSUE/BIOMATERIAL)<br />
<br />
<br />
<span style="font-size:16px"><b>*ERGONOMICS*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41742828" target="_blank">Analytical comparison of selected international tools for the risk assessment of upper-limbs biomechanical overload in repetitive tasks.</a></b> Colombini D, Occhipinti E, Fox R, Moresco D, Candoli M, <i>Ergonomics</i>. (99.1% ERGONOMICS; 0.2% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41731029" target="_blank">The SEWAbility system: a video-based job analysis framework for understanding task-specific job demands.</a></b> Hu H, Ding Z, Fu EY, Ng PHF, Cheng ASK, <i>Scientific reports</i>. (95.3% ERGONOMICS; 2.7% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41723911" target="_blank">Socioeconomic status and intrinsic capacity trajectories among middle-aged and older adults in China: mediating role of cognitive leisure activities.</a></b> Qing M, Wang JL, Wang L, Xie L, He Y, Ran L, Wang X, <i>The journal of nutrition, health &amp;amp; aging</i>. (19.8% ERGONOMICS; 14.3% SPORT/EXERCISE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41720190" target="_blank">Duration of human milk feeding, human milk oligosaccharides, and child development at five years of age: a cohort study of urban Chinese mother-child dyads.</a></b> Xing X, Wang J, Yang M, Liu S, Lan Q, Li X, Buck R, Morrin S, Zhu H, Mao Y, Wang S, <i>The Journal of nutrition</i>. (25.8% ERGONOMICS; 12.3% VETERINARY/AGRICULTURAL)<br />
<br />
<br />
<span style="font-size:16px"><b>*EVOLUTION/ANTHROPOLOGY*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41721203" target="_blank">Skull evolution in woodpeckers via articular innovation and allometric decoupling facilitates pecking performance.</a></b> Lyons S, Nebreda SM, Vizca&amp;iacute;no SF, <i>Journal of anatomy</i>. (81.1% EVOLUTION/ANTHROPOLOGY; 14.6% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41716146" target="_blank">Convergent evolution of harmonic hopping: multiple origins of high-frequency calls in crickets.</a></b> Jonsson T, Gaiddon T, Holmes LB, Montealegre-Z F, Robillard T, <i>The Journal of experimental biology</i>. (83.1% EVOLUTION/ANTHROPOLOGY; 14.8% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41713230" target="_blank">Activity-related skeletal changes at the olecranon tip in three individuals from the Iron Age cemetery in Hallstatt, Austria.</a></b> Pany-Kucera D, Tiefengraber G, Bastir M, Villotte S, <i>International journal of paleopathology</i>. (63.0% EVOLUTION/ANTHROPOLOGY; 17.0% ERGONOMICS)<br />
<br />
<br />
<span style="font-size:16px"><b>*GAIT/LOCOMOTION*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41733041" target="_blank">Static native tibial alignment in total knee arthroplasty optimises whole-body gait kinematics.</a></b> Li Z, Winnock de Grave P, Van Criekinge T, Luyckx T, Claeys K, <i>Knee surgery, sports traumatology, arthroscopy : official journal of the ESSKA</i>. (32.7% GAIT/LOCOMOTION; 17.9% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41745415" target="_blank">Spatiotemporal Gait Parameters in Fixed Versus Rotating Bearing Total Knee Arthroplasty: A Prospective 24-Month Longitudinal Study.</a></b> Trindade AMVD, Rezende LP, Ara&amp;uacute;jo HRDS, Parreira RB, Santili C, Oliveira CS, <i>Journal of personalized medicine</i>. (37.8% GAIT/LOCOMOTION; 24.6% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41720931" target="_blank">Differences in gait biomechanics during level walking between chronic stroke patients with and without depression.</a></b> Bak SY, Chung EH, Shin S, Kim H, Cho E, Jeon H, Kim M, <i>Scientific reports</i>. (74.8% GAIT/LOCOMOTION; 13.7% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41734521" target="_blank">Corrigendum to &quot;The impact of backpack load on adolescent stair descent safety and injury risk&quot; J. Biomech. 166 (2024) 112029.</a></b> Lu Z, Mao C, Tan Y, Liu T, Li X, Li Z, Zhu W, Sun Y, <i>Journal of biomechanics</i>. (45.1% GAIT/LOCOMOTION; 20.2% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41740439" target="_blank">Running with an exotendon reduces compressive knee contact force.</a></b> Stingel J, Haralabidis N, Hicks J, Uhlrich S, Delp S, <i>Journal of biomechanics</i>. (48.0% GAIT/LOCOMOTION; 40.0% SPORT/EXERCISE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41728867" target="_blank">Neuromuscular Basis of Kinematic Adaptations During Bidirectional Walking.</a></b> Mojtabavi H, Ajdari A, Rueda-Parra S, Gemoets DE, Wolpaw JR, Hardesty RL, <i>bioRxiv : the preprint server for biology</i>. (96.5% GAIT/LOCOMOTION; 0.8% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41738009" target="_blank">Biomechanical analysis of gait initiation in stroke survivors based on a modified phase segmentation method.</a></b> Liu L, Wang W, Wei H, Yue S, <i>Frontiers in neurology</i>. (54.3% GAIT/LOCOMOTION; 24.3% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41720618" target="_blank">Cortical Beta Oscillations Contributing to Precision Stepping at Gait Initiation.</a></b> Nishioka Y, Kokabu T, Hada M, Kono R, Matsuura A, <i>The European journal of neuroscience</i>. (95.6% GAIT/LOCOMOTION; 2.8% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41718181" target="_blank">Kinematic and Kinetic Adaptations to Step Cadence Modulation During Walking in Healthy Adults.</a></b> Lluch Fruns J, Manzanares-C&amp;eacute;spedes MC, P&amp;eacute;rez-Palma L, Verg&amp;eacute;s Salas C, <i>Journal of functional morphology and kinesiology</i>. (96.3% GAIT/LOCOMOTION; 0.9% ERGONOMICS)<br />
<br />
<br />
<span style="font-size:16px"><b>*HAND/FINGER/FOOT/TOE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41741891" target="_blank">A comprehensive weightbearing computed tomography study: the pathogenesis of first metatarsal pronation in sesamoid bone displacement, due to hallux valgus deformity and progressive collapsing foot deformity (PCFD).</a></b> Raikov BD, Bobrov DS, Serova NS, Lychagin AV, <i>International orthopaedics</i>. (98.1% HAND/FINGER/FOOT/TOE; 0.5% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41732081" target="_blank">Evaluation on locking plate fixation with and without oblique screw in thumb carpometacarpal joint arthrodesis with finite element analysis.</a></b> Tatsumi K, Higuchi M, Nishi T, Kurosawa A, Tada K, Tachiya H, <i>Medical engineering &amp;amp; physics</i>. (75.0% HAND/FINGER/FOOT/TOE; 10.9% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41719052" target="_blank">Comparing Fixation Stability of Rotationally Unstable Proximal Phalanx Fractures: A Biomechanical Study.</a></b> Zeng F, Bauer J, Rajan R, Singh R, Tamburini L, Grace Z, Korabelnikov T, Ferriera JV, Parrino A, Rodner CM, <i>Hand (New York, N.Y.)</i>. (85.5% HAND/FINGER/FOOT/TOE; 12.1% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41727349" target="_blank">Skin involvement is measurable in Dupuytrens' disease: Reliability of standardized skin elasticity measurements with Cutometer&amp;reg; MPA 580.</a></b> Meulyzer C, Tulkens P, Van den Kerckhove E, Van Nuffel M, Anthonissen M, Degreef I, <i>Hand therapy</i>. (71.7% HAND/FINGER/FOOT/TOE; 12.8% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41718194" target="_blank">Prevalence and Risk of Carpal Tunnel Syndrome in Parkinson's Disease: A Systematic Review and Meta-Analysis.</a></b> Attia AN, Raafat KW, Ezz MR, Sabry EN, Mohammed MM, Amin AM, Syed MS, Pamboris GM, Plakias S, Viseux F, Ibrahim IA, <i>Journal of functional morphology and kinesiology</i>. (29.3% HAND/FINGER/FOOT/TOE; 20.2% NEURAL)<br />
<br />
<br />
<span style="font-size:16px"><b>*JOINT/CARTILAGE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41716676" target="_blank">Harnessing the gut-immune-joint axis: Oral microalgae-based thermoresponsive microspheres enhance intra-articular therapy for rheumatoid arthritis.</a></b> Wang R, Tong A, Jin K, Yu R, Lin D, Yang D, Liu X, Cui J, Niu J, Cui Y, Zhu H, Zhou M, <i>Bioactive materials</i>. (86.4% JOINT/CARTILAGE; 2.6% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41727271" target="_blank">In vitro phenotypically stable cartilage regeneration with mechanically adaptable microenvironment using a hydrostatic pressure bioreactor.</a></b> Qiu C, Tang Y, Zhang Y, An T, Chen X, He S, Ci Z, Zhang W, Xia H, Huo Y, Wang D, Zhou G, Hua Y, <i>Bioactive materials</i>. (76.4% JOINT/CARTILAGE; 19.2% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41744041" target="_blank">KSSTA leadership update: Welcoming Philipp Winkler as new Associate Editor for cartilage and meniscus.</a></b> Hirschmann MT, Herbst E, Prill R, Kayaalp E, Milano G, <i>Knee surgery, sports traumatology, arthroscopy : official journal of the ESSKA</i>. (80.6% JOINT/CARTILAGE; 8.4% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41733670" target="_blank">In vivo kinematics of knee joint cartilage and meniscus contact areas under load application: a biomechanical MRI study.</a></b> Mayr MF, Meine H, Lange T, Yilmaz T, Taghizadeh E, Schmal H, Izadpanah K, <i>Archives of orthopaedic and trauma surgery</i>. (96.6% JOINT/CARTILAGE; 0.7% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41731212" target="_blank">Complications and Reoperations Following Meniscal Repair and Transplantation.</a></b> Rechter GR, Reed LA, Khan AM, Deliso M, Hevesi M, Krych AJ, Levy BA, <i>Current reviews in musculoskeletal medicine</i>. (42.0% JOINT/CARTILAGE; 37.8% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41721857" target="_blank">Lateral meniscal stabilizers, variants, and injuries of the knee.</a></b> Gorbachova T, Ina JG, Krych AJ, Melenevsky Y, <i>Skeletal radiology</i>. (58.6% JOINT/CARTILAGE; 29.7% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41724297" target="_blank">A thermally triggered, in situ-forming tropoelastin hydrogel enables programmed control of stem cell-driven cartilage regeneration in osteoarthritis.</a></b> Song Y, Gao W, Gao Y, Gao S, Miao Y, Zhou G, Wang B, Yang X, Jin Y, <i>International journal of biological macromolecules</i>. (79.5% JOINT/CARTILAGE; 17.3% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41722484" target="_blank">The role of sagittal tibial tubercle-trochlear groove distance in patellofemoral joint loading: a computational modeling analysis.</a></b> Schmidt S, Ghosson Leite CB, Franco D, Jacobs CA, Lattermann C, <i>The Knee</i>. (86.8% JOINT/CARTILAGE; 7.5% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41717285" target="_blank">Association between discoid lateral meniscus and medial meniscus posterior root tear: A retrospective cohort study.</a></b> Yamashita R, Okazaki Y, Kintaka K, Kawada K, Kohara T, Furumatsu T, <i>Journal of experimental orthopaedics</i>. (62.3% JOINT/CARTILAGE; 16.2% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41730743" target="_blank">Research progress on the causes of pain in knee osteoarthritis.</a></b> Wei N, Zheng Z, <i>Zhongguo xiu fu chong jian wai ke za zhi = Zhongguo xiufu chongjian waike zazhi = Chinese journal of reparative and reconstructive surgery</i>. (97.6% JOINT/CARTILAGE; 0.7% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41731857" target="_blank">Traditional, central obesity, and metabolic indices: which metrics better reflect osteoarthritis risk? A cross-sectional study in U.S. adults.</a></b> Gao K, Zhang Y, Zhang L, Xu J, Li W, Wang P, Dai P, Xue H, Liu A, Zhang C, <i>International journal of surgery (London, England)</i>. (72.3% JOINT/CARTILAGE; 5.8% METHODS)<br />
<br />
<br />
<span style="font-size:16px"><b>*METHODS*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41746309" target="_blank">Recent Advances in The Virtual Fields Method for Evaluating and Identifying Tissue Biomechanical Properties and Constitutive Parameters.</a></b> Avril S, <i>Journal of biomechanical engineering</i>. (53.6% METHODS; 40.3% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41731265" target="_blank">Portable Upper-limb Muscle Tone Assessment by Integrating Multi-sensor Signals.</a></b> Zhang Y, Zheng Y, ShangGuan H, Chen T, Wang WZ, Wang YL, Lin P, He B, Hong W, Chen XY, <i>Annals of biomedical engineering</i>. (56.1% METHODS; 37.2% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41729836" target="_blank">Deep locomotion prediction learning over biosensors, ambient sensors, and computer vision.</a></b> Javeed M, Jalal A, AlHammadi DA, Lee B, <i>PloS one</i>. (46.3% METHODS; 24.2% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41729663" target="_blank">Biomechanics-informed Non-rigid Medical Image Registration with Elasticity Theories.</a></b> Min Z, Baum ZMC, Saeed SU, Ma S, Du X, Emberton M, Barratt DC, Taylor ZA, Hu Y, <i>IEEE transactions on medical imaging</i>. (50.5% METHODS; 43.8% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41729656" target="_blank">Physics-Informed Deep Learning for Shear Wave Speed Estimation in MR Elastography.</a></b> Martin S, Schattenfroh J, Schuenke P, Zimmermann FF, Sack I, Kolbitsch C, Kofler A, <i>IEEE transactions on bio-medical engineering</i>. (88.1% METHODS; 5.1% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41718757" target="_blank">In vivo therapy for prenatal repair of the ovine fetal myelomeningocele model using human umbilical cord-derived mesenchymal stem cells: proof of principle.</a></b> Bamberg C, Tomuschat C, Hecher K, R&amp;uuml;diger M, M&amp;ouml;bius MA, Hagel C, Reitmeier A, Schr&amp;ouml;der ML, Diemert A, Reinshagen K, <i>Journal of perinatal medicine</i>. (28.5% ORTHOPAEDICS/SPINE; 25.5% TISSUE/BIOMATERIAL)&#8203;<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41723824" target="_blank">Chitosan-Loaded Lead-Free Sodium Bismuth Titanate Composite Flexible Triboelectric Nanogenerator for Energy Harvesting, Biomechanical Sensing, and Smart-Path Touch-Lighting for Safe Walking Applications.</a></b> Katta V, Mohana Rani G, Umapathi R, Huh YS, Sanasi PD, <i>Small (Weinheim an der Bergstrasse, Germany)</i>. (51.9% METHODS; 19.2% ROBOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41723822" target="_blank">ZnSnO3-Ecoflex/LDH-PU Based Triboelectric Nanogenerator for Motion-Activated Battery-Free Smart Street Lighting.</a></b> Ramadasu G, Woo I, Yoon JU, Gajula P, Bae JW, <i>Small (Weinheim an der Bergstrasse, Germany)</i>. (52.8% METHODS; 30.4% ROBOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41732199" target="_blank">The EQ-5D-5L and Minimal Important Change in Long COVID.</a></b> Smith AB, Greenwood DC, Milne R, Ormerod M, Sivan M, <i>Advances in rehabilitation science and practice</i>. (46.2% METHODS; 8.3% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41721555" target="_blank">Borophene/PVDF Composite Film With High Piezoelectric Coefficient for Closed-Loop Monitoring and Intervention of Obstructive Sleep Apnea.</a></b> Kong X, Jin X, Liao F, Xing L, Zhan Y, Long Z, Liu F, Xue X, <i>Advanced healthcare materials</i>. (80.3% METHODS; 3.0% CARDIOVASCULAR/CARDIOPULMONARY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41723909" target="_blank">International normative values for the weight-bearing lunge test across age and sex in 899 healthy adults.</a></b> McBride S, Isabelle PL, G&amp;oacute;mez-Carri&amp;oacute;n &amp;Aacute;, Farahpour N, Chicoine D, Griffiths I, Dami A, Reguera Medina JM, Moisan G, <i>Musculoskeletal science &amp;amp; practice</i>. (21.2% METHODS; 21.1% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41722745" target="_blank">Preserving Tissue Integrity Under the Beam: High-Energy, Low-Dose Synchrotron CT for in situ Imaging of Bovine Intervertebral Discs.</a></b> Disney CM, Lees R, Parker AW, Atwood R, Burca G, <i>Acta biomaterialia</i>. (50.7% METHODS; 32.0% ORTHOPAEDICS/SPINE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41722241" target="_blank">Average rotation matrices for converting scapula- and glenoid-based coordinate systems to ISB recommendations.</a></b> Moissenet F, Michaud B, Puchaud P, Hagemeister N, Begon M, Holzer N, <i>Journal of biomechanics</i>. (55.0% METHODS; 33.2% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41733472" target="_blank">MR Elastography Characterization of Biomechanical Properties to Enhance Enterographic Fibrosis Diagnosis.</a></b> Chen Z, Wang Y, Fang Z, Zhang M, Zhang R, Zheng Q, Huang L, Wu L, Ke Y, Zhao Q, Zheng W, Mao R, Li Z, Huang Q, Li X, <i>Radiology</i>. (32.4% METHODS; 26.0% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41744707" target="_blank">Acoustic Bubble Sensing Techniques and Bioapplications.</a></b> Ning R, Faulkner J, Wu M, Gao Y, <i>Biosensors</i>. (89.2% METHODS; 3.9% TISSUE/BIOMATERIAL)<br />
<br />
<br />
<span style="font-size:16px"><b>*MODELING*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41729652" target="_blank">Development and Validation of a Coupled Numerical Wrap Model for Pressure Distribution and Comfort Prediction in Ankle Soft Exosuit.</a></b> Xu F, Deng T, Fang X, Shuai T, Li K, <i>IEEE transactions on neural systems and rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society</i>. (47.3% MODELING; 29.7% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41724061" target="_blank">A detailed musculoskeletal multibody simulation framework for computational analysis of the glenohumeral joint biomechanics after total shoulder replacement.</a></b> Soodmand I, Herrmann S, Klose T, Ruehrmund L, Lutter C, Tischer T, Woernle C, Bader R, Kebbach M, <i>Computers in biology and medicine</i>. (92.1% MODELING; 4.6% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41721571" target="_blank">A Soft Robotic Model for Simulating Heart Valve Disease and Cardiac Interventions.</a></b> Davies J, Nicotra E, Zhu K, Nguyen CC, Sharma B, Ji A, Phan PT, Wan J, Pruscino P, Truong H, Rnjak-Kovacina J, Phan HP, Hayward C, Lovell NH, Do TN, <i>Advanced science (Weinheim, Baden-Wurttemberg, Germany)</i>. (67.0% MODELING; 24.1% CARDIOVASCULAR/CARDIOPULMONARY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41718850" target="_blank">Non-invasive Assessment of Pancreatic Duct Hypertension Using Computational Flow Modeling.</a></b> Zhao H, Seo JH, Akshintala V, Evani S, Mittal R, <i>Annals of biomedical engineering</i>. (41.8% MODELING; 19.9% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41712980" target="_blank">Neural network surrogates for musculoskeletal models: An application to implant alignment in total knee arthroplasty.</a></b> Ten Klooster L, Tzanetis P, Janssen D, Bitter T, Wolterink JM, <i>Journal of biomechanics</i>. (62.7% MODELING; 15.8% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41712979" target="_blank">Personalization of military load carriage simulations affects muscle and joint contact forces.</a></b> Corman AC, Sturdy JT, Rizeq HN, Daquino CJ, Whittier TT, Silder A, Sessoms PH, Silverman AK, <i>Journal of biomechanics</i>. (71.2% MODELING; 12.7% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41732964" target="_blank">Finite element analysis of femoral component positioning in medial UKA: A focus on varied bone quality.</a></b> Liu M, Chen G, He Y, Lu H, Qin Y, Mei C, Ju X, <i>Journal of orthopaedic surgery (Hong Kong)</i>. (41.5% MODELING; 20.4% ORTHOPAEDICS/SURGERY)<br />
<br />
<br />
<span style="font-size:16px"><b>*MUSCLE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41741933" target="_blank">Regional Differences in Muscle and Fascial Tissue Stiffness in the Rectus Femoris Are Dependent Upon Localised Stretching.</a></b> Ley CD, Valdes EM, Murtagh CF, Power J, Drust B, <i>European journal of sport science</i>. (97.3% MUSCLE; 1.6% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41739374" target="_blank">Intrinsic capacity across the adult lifespan in China: baseline analysis from the nationwide longitudinal PENG ZU cohort.</a></b> Cui J, Gu Y, Pang J, Gao H, Zhang LQ, Wu X, Dang J, Li J, Zhu X, Luo S, Wang Z, Tu F, Zhang L, Liu Y, Yang G, Zhang Q, Wang W, Tian W, Li W, Xiong W, Zhang X, Lin Z, Zheng S, Dai L, Wang X, Lu Z, Sun X, Cai J, Ma W, Zhang T, <i>GeroScience</i>. (39.6% MUSCLE; 10.9% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41722070" target="_blank">Congenital Agenesis of the Obturator Foramen in an Asian Population and Its Clinical Significance.</a></b> Chakravarthi KK, Gaddam TR, <i>Annals of African medicine</i>. (32.4% MUSCLE; 15.5% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41718192" target="_blank">Influence of Body Position Changes on Diaphragmatic Excursion Assessed by Ultrasonography in a Healthy Population.</a></b> Arzayus-Pati&amp;ntilde;o L, Daza-Arana JE, V&amp;aacute;squez Cartagena S, Villamizar C, Mel&amp;eacute;ndez Diaz J, Mu&amp;ntilde;oz-Escudero DF, <i>Journal of functional morphology and kinesiology</i>. (83.5% MUSCLE; 8.6% METHODS)<br />
<br />
<br />
<span style="font-size:16px"><b>*NEURAL*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41735502" target="_blank">Distinct neural signatures of hippocampal population dynamics during locomotion-in-place.</a></b> Inayat S, McAllister BB, Whishaw IQ, Mohajerani MH, <i>Scientific reports</i>. (93.5% NEURAL; 3.5% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41740682" target="_blank">Neurophysiological Metrics of Surprise during Locomotor Uncertainty.</a></b> Roberts B, Seidler RD, <i>Journal of neuroscience methods</i>. (66.5% NEURAL; 25.6% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41722566" target="_blank">All-optical electrophysiology reveals behavior-dependent dynamics of excitation and inhibition in the hippocampus.</a></b> Yang Q, Baror-Sebban S, Kipper R, London M, Adam Y, <i>Neuron</i>. (96.9% NEURAL; 0.7% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41728385" target="_blank">Efficacy of Probiotic Escherichia coli Nissle 1917 in Counteracting Reserpine-induced Depression-like Symptoms and Neuroinflammation in Zebrafish.</a></b> Mohammed V, Shanmugaraja M, Sureshkumar K, <i>Indian journal of psychological medicine</i>. (38.1% NEURAL; 24.6% CELLULAR/SUBCELLULAR)<br />
<br />
<br />
<span style="font-size:16px"><b>*ORTHOPAEDICS (SPINE)*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41739415" target="_blank">A Muscle-Driven Lumbar Spine Model for Predicting Vibration-Induced Spinal Loads with Adaptive Control.</a></b> Zhou J, Fan C, Li Y, Liang X, Peng Y, <i>Annals of biomedical engineering</i>. (56.6% ORTHOPAEDICS/SPINE; 35.5% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41735506" target="_blank">Pathogenesis of pediatric acute hyperextension spinal cord injury based on clinical outcomes and early radiological characteristics.</a></b> Lu H, Xue P, Fan Q, Sun W, Zeng L, Zhang P, Ye B, Shen X, Wu B, Guo X, <i>Spinal cord</i>. (72.0% ORTHOPAEDICS/SPINE; 8.4% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41733020" target="_blank">Effect of pedicle-screw fixation on cervical spine: A comparative finite element analysis.</a></b> Halder S, Malas A, Biswas JK, <i>The International journal of artificial organs</i>. (98.6% ORTHOPAEDICS/SPINE; 0.4% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41723866" target="_blank">The Alignment and Compensation (AC) Classification of High-Grade Spondylolisthesis: Description and Validation of a Novel Biomechanical Classification.</a></b> Domenico C, Luca V, Javier P, Ibrahim O, Per T, Yong H, Ahmet A, Cristiano M, Emiliano V, Sameh A, Klaus S, Munish G, Heiko K, Alvin P, Francesco F, Tokumi K, Claudio L, Pedro B, <i>Spine</i>. (98.4% ORTHOPAEDICS/SPINE; 0.6% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41732625" target="_blank">Clinical Outcomes of Lumbar Fusions Using Transfacet Screws.</a></b> Davidson IU, Courtois EC, Lieberman I, Ohnmeiss DD, <i>Cureus</i>. (97.8% ORTHOPAEDICS/SPINE; 1.5% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41717195" target="_blank">A Five-Year Comparative Effectiveness Analysis of Anterior Cervical Discectomy and Fusion Versus Cervical Total Disc Replacement: A Retrospective Multiparametric Evaluation of Clinical, Radiological, and Quality of Life Outcomes.</a></b> Dave BR, Agrawal SS, Vashishtha A, Krishnan A, Mayi SC, Rai RR, Dave MB, Panthackel M, Singh A, Kulkarni SS, Adodariya Y, <i>Cureus</i>. (97.3% ORTHOPAEDICS/SPINE; 1.9% ORTHOPAEDICS/SURGERY)<br />
<br />
<br />
<span style="font-size:16px"><b>*ORTHOPAEDICS (SURGERY)*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41717068" target="_blank">Isolated lateral release or lateral lengthening for non-instability indications: A systematic review.</a></b> Feingold CL, Lin EH, Barcenas AB, Young BA, Chin JS, Stone AV, Liu JN, <i>Journal of orthopaedics</i>. (57.1% ORTHOPAEDICS/SURGERY; 29.5% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41732434" target="_blank">Prophylactic acromion pin fixation reduces catastrophic failure in weakened acromion biomechanical model of reverse shoulder arthroplasty.</a></b> Werner BC, Denard PJ, Hoshika S, Hung VT, McGarry MH, Komatsu T, Lee TQ, <i>JSES international</i>. (72.9% ORTHOPAEDICS/SURGERY; 16.9% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41732430" target="_blank">High variability in the degree of liner stability ratio among glenoid components of different anatomical total shoulder arthroplasty systems.</a></b> Shekhbihi A, Abdalla A, Modelhart M, Herbst EC, Raiss P, Moroder P, <i>JSES international</i>. (52.2% ORTHOPAEDICS/SURGERY; 23.4% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41732428" target="_blank">A biomechanical comparison of fibular strut and femoral head allograft for augmented locking plate fixation in three-part proximal humerus fractures.</a></b> Mennes SRJ, Shirinskiy IJ, Kool CEM, Tutuhatunewa ED, Bleys RLAW, Alta TDW, van den Bekerom MPJ, Kok LM, <i>JSES international</i>. (80.9% ORTHOPAEDICS/SURGERY; 9.0% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41732421" target="_blank">Optimal tension of fascia lata graft with SuturePatch augmentation in superior capsule reconstruction for irreparable tears of the supraspinatus and infraspinatus tendons.</a></b> Mihata T, Chalmers CE, Carbone J, Maniglio M, K&amp;uuml;nzler M, Patel NA, Fujisawa Y, McGarry MH, Lee TQ, <i>JSES international</i>. (48.6% ORTHOPAEDICS/SURGERY; 42.9% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41725632" target="_blank">Robotic-assisted total knee arthroplasty for post-traumatic osteoarthritis following tibial plateau fractures: A narrative review.</a></b> Granata F, Nasca F, Cobisi CD, Bellia MGL, Burgio C, Bosco F, <i>Journal of clinical orthopaedics and trauma</i>. (59.4% ORTHOPAEDICS/SURGERY; 22.8% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41717311" target="_blank">Comparable biomechanical performance of magnesium-based and titanium screws for the Latarjet procedure in a cadaveric study.</a></b> Selman F, Ongini E, Perry NPJ, Meisterhans M, Gressl M, Wieser K, <i>JSES international</i>. (89.4% ORTHOPAEDICS/SURGERY; 2.5% VETERINARY/AGRICULTURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41733751" target="_blank">Biomechanical comparison of radiopalmar double plating with conventional palmar plating in comminuted distal radius fractures.</a></b> J&amp;auml;ger CF, Spiegel C, Kohler FC, Kielstein H, Zderic I, Gueorguiev-R&amp;uuml;egg B, Hofmann GO, Lenz M, Weschenfelder W, <i>Archives of orthopaedic and trauma surgery</i>. (67.0% ORTHOPAEDICS/SURGERY; 26.7% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41731314" target="_blank">Can Suture Tape Improve Radial Meniscal Tear Repair Over Traditional Suture? A Biomechanical Cadaveric Study.</a></b> Stoner AJ, Huang A, Alayleh AM, Duru NO, Anaya Gallegos A, Chan C, Chan C, Ellis HB, Ganley T, Meadows MC, Schmitz MR, Sherman SL, Tompkins MA, Yen YM, Shea KG, <i>The American journal of sports medicine</i>. (74.3% ORTHOPAEDICS/SURGERY; 9.3% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41729233" target="_blank">Fixing geriatric ankle fractures: fibular nail versus locking plate in a prospective multicenter study.</a></b> Kohler FC, Berfelde Z, Schenk P, Weschenfelder W, Wildemann B, Kobbe P, Mendel T, Ullrich BW, <i>European journal of trauma and emergency surgery : official publication of the European Trauma Society</i>. (52.4% ORTHOPAEDICS/SURGERY; 36.2% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41723480" target="_blank">Polypropylene mesh reinforcement does not improve acute biomechanical properties in superior capsular reconstruction: an ovine model study.</a></b> Karademir G, Durbas A, Diril SK, Ozdemir YE, Tunali O, Ersen A, Atalar AC, <i>Journal of orthopaedic surgery and research</i>. (35.8% ORTHOPAEDICS/SURGERY; 27.2% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41723475" target="_blank">&#8203;&#8203;Intramedullary versus crossed pinning for paediatric distal radius fractures: clinical decision patterns and biomechanical validation integrating real-world practice with growth plate stress finite element analysis.</a></b> Ma Q, Wang Y, Luo Y, Chen B, Chen M, Pei H, Jin F, Zhang Z, <i>Journal of orthopaedic surgery and research</i>. (67.1% ORTHOPAEDICS/SURGERY; 11.9% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41723375" target="_blank">Effects of arthroscopic meniscectomy or meniscoplasty of discoid meniscus on lower limb axial alignment: a systematic review and meta-analysis.</a></b> Wen C, Hua Q, Qian W, Su J, Lei M, <i>BMC musculoskeletal disorders</i>. (51.1% ORTHOPAEDICS/SURGERY; 35.4% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41721504" target="_blank">Independent Risk Factors for Lag Screw Cut-Out: The Role of Open Reduction in Intertrochanteric Fracture Fixation With the Proximal Femoral Nail.</a></b> Alkan H, Erdo&#287;an Y, <i>Medical science monitor : international medical journal of experimental and clinical research</i>. (90.1% ORTHOPAEDICS/SURGERY; 3.0% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41727981" target="_blank">Tibial Tubercle Osteotomy With Medial Patellofemoral Ligament Reconstruction Utilizing Autograft Hamstring Tendon and Knotless Suture Anchor Fixation.</a></b> Winzenried AE, Enos J, Dhawan A, Lucas A, Baer G, <i>Video journal of sports medicine</i>. (68.5% ORTHOPAEDICS/SURGERY; 23.2% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41720244" target="_blank">Effect of Glenoid Component Compression Timing on the Cement-Bone Interface of Pegged All-Polyethylene Glenoid Components: A Micro-Computed Tomography Study.</a></b> Kendirci A&#350;, Atasoy &#304;T, Albayrak MO, Kabada&#351; FB, Okatar F, Er&#351;en A, <i>Journal of shoulder and elbow surgery</i>. (46.6% ORTHOPAEDICS/SURGERY; 20.5% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41717534" target="_blank">Evolution and outcomes of telescoping intramedullary rods in pediatric bone fragility disorders: A systematic review.</a></b> Mounsef PJ, Legler J, Patel D, Hamdy R, <i>Journal of children's orthopaedics</i>. (74.5% ORTHOPAEDICS/SURGERY; 7.6% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41724017" target="_blank">Fracture fixation, then and now: When implants learn to heal.</a></b> Marta M, Oliveira L, Miranda IM, de Oliveira SC, <i>Injury</i>. (54.5% ORTHOPAEDICS/SURGERY; 30.1% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41730742" target="_blank">Research progress in surgical treatment of calcaneal fracture malunions.</a></b> Ji D, Wang Q, Zhao H, <i>Zhongguo xiu fu chong jian wai ke za zhi = Zhongguo xiufu chongjian waike zazhi = Chinese journal of reparative and reconstructive surgery</i>. (55.3% HAND/FINGER/FOOT/TOE; 41.1% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41717327" target="_blank">Osteonecrosis of femoral head after cement augmented TFNA nailing for an intertrochanteric fracture: A case report.</a></b> Kasha S, Yalamanchili RK, Gurram A, Yamajala S, Rohit GPRK, <i>Trauma case reports</i>. (83.5% ORTHOPAEDICS/SURGERY; 5.7% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41716625" target="_blank">Biomechanical study on the treatment of tibial defects in total knee arthroplasty using the cement-screw and metal block with extension stem techniques: a finite element analysis.</a></b> Lu Y, Tang Z, Gu Q, Zhu Z, Liu W, Zhu Z, Duan G, <i>Frontiers in bioengineering and biotechnology</i>. (73.6% ORTHOPAEDICS/SURGERY; 13.2% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41720111" target="_blank">Image-guided Percutaneous Osteosynthesis: Beyond the Limits.</a></b> Stacoffe N, Grange S, Lavigne J, Chalamet B, Benrejeb I, Mondon P, Perez H, Felicia C, Boulade W, Kastler A, Pialat JB, <i>Seminars in musculoskeletal radiology</i>. (67.8% ORTHOPAEDICS/SURGERY; 16.6% BONE)<br />
<br />
<br />
<span style="font-size:16px"><b>*POSTURE/BALANCE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41741492" target="_blank">One-Legged Stand Test: Synchronized Motion Capture, Force Plate, and Radar Dataset for Fall-Risk.</a></b> Copeland D, Zhang X, Linton E, Mori B, Lugaro H, Anthony BW, <i>Scientific data</i>. (48.6% POSTURE/BALANCE; 32.1% METHODS)<br />
<br />
<br />
<span style="font-size:16px"><b>*PROSTHETICS/ORTHOTICS*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41730306" target="_blank">Real-time visual feedback affects peak propulsive horizontal force and metabolic cost in individuals with unilateral transtibial amputation during walking.</a></b> Hirschman CE, Zhang-Lea JH, Grabowski AM, <i>Journal of applied physiology (Bethesda, Md. : 1985)</i>. (85.6% PROSTHETICS/ORTHOTICS; 10.6% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41719221" target="_blank">Biomechanical and physiological effects of a passive upper-body exoskeleton during stair ascent and descent.</a></b> Garcia G, Espoz M, Albuja C, Ya&amp;ntilde;ez R, Arauz PG, Martin BJ, <i>PloS one</i>. (47.1% PROSTHETICS/ORTHOTICS; 17.8% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41713177" target="_blank">The intact meniscus and an artificial meniscus prosthesis both act as a shock absorber in the knee joint.</a></b> van Minnen BS, Hilgenga W, van der Veen AJ, van de Groes SAW, Verdonschot N, van Tienen TG, <i>The Knee</i>. (68.5% PROSTHETICS/ORTHOTICS; 21.7% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41744582" target="_blank">A Personalized Gait Parameter Prediction-Based Speed-Adaptive Control Method for Hybrid Active-Passive Intelligent Prosthetic Knee.</a></b> Wang X, Li Y, Li H, Luo S, Yu H, <i>Biomimetics (Basel, Switzerland)</i>. (96.3% PROSTHETICS/ORTHOTICS; 1.4% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41744575" target="_blank">An Optimization Method for an Active Multi-Unit Prosthetic Socket with Dynamic Adaptability in Multi-Task Scenarios.</a></b> Hu Y, Jiang L, Zou C, Yang B, Han T, Cheng M, <i>Biomimetics (Basel, Switzerland)</i>. (98.4% PROSTHETICS/ORTHOTICS; 0.4% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41729653" target="_blank">An Optimal Control-Based Digital Computational Framework for Predicting the Entire Cycle Sit-to-Stand Motion in Unilateral Transtibial Amputees.</a></b> Wang W, Bian Q, Shepherd D, Ge Q, Bull AMJ, Ding Z, <i>IEEE transactions on neural systems and rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society</i>. (57.7% PROSTHETICS/ORTHOTICS; 23.3% MODELING)<br />
<br />
<br />
<span style="font-size:16px"><b>*REHABILITATION*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41744140" target="_blank">A case report on gait in spinocerebellar ataxia: evaluating the use of mixed reality from independent walking to integrated physical support.</a></b> Loureiro M, Valentino J, Oliveira W, Machado F, Elias A, Mello R, Leal A, Frizera A, <i>Disability and rehabilitation. Assistive technology</i>. (74.2% REHABILITATION; 14.8% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41731813" target="_blank">Efficacy of biomechanics-based core muscle training in patients with postpartum stress urinary incontinence.</a></b> Yang X, Wu X, Su X, Li P, Wang X, <i>Medicine</i>. (77.7% REHABILITATION; 12.5% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41715005" target="_blank">The effect of multimodal rehabilitation program on pain, functional outcomes, and plantar fascia thickness in patients with plantar fasciitis: a randomized controlled trial.</a></b> Ibraheem MR, El-Moneim MAA, Ibrahim MM, <i>BMC musculoskeletal disorders</i>. (48.7% REHABILITATION; 23.4% HAND/FINGER/FOOT/TOE)<br />
<br />
<br />
<span style="font-size:16px"><b>*ROBOTICS*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41739915" target="_blank">Fluidic torque-enabled object manipulation by microrobot collectives.</a></b> Ceron S, Gardi G, Petersen K, Sitti M, <i>Science advances</i>. (99.1% ROBOTICS; 0.2% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41746300" target="_blank">Development of a Force Perturbation Handle for Physical Interaction Research in Humans.</a></b> Tien H, Song YS, Burns D, Mohammadi Beriami M, Ghorbani Zadeh K, Still R, <i>Journal of biomechanical engineering</i>. (82.7% ROBOTICS; 7.7% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41739909" target="_blank">Modular reconfigurable robots: Toward on-demand multifunctional applications.</a></b> Liang G, Ijspeert AJ, Yim M, Lam TL, <i>Science robotics</i>. (99.2% ROBOTICS; 0.2% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41730248" target="_blank">Generating coordinated bounding locomotion for a small-scale quadrupedal robot with thoracic-pelvic articulation via reinforcement learning.</a></b> Wang R, Du R, Zhang W, Wang X, Shi Q, <i>Bioinspiration &amp;amp; biomimetics</i>. (98.6% ROBOTICS; 0.7% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41730239" target="_blank">DEEP DIVE INTO MODEL-FREE REINFORCEMENT LEARNING FOR UNDERWATER LOCOMOTION: THEORY AND PRACTICE.</a></b> Jiao Y, Ling F, Heydari S, Heess N, Merel J, Kanso E, <i>Bioinspiration &amp;amp; biomimetics</i>. (94.6% ROBOTICS; 2.5% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41721944" target="_blank">Disorder and Homeostasis in ANIBOT A Biologically-Inspired Animal Robot.</a></b> Castillo K, Parker M, Reyes N, Palacios A, McGee EC, Longhini P, Lopez H, Vo K, <i>Bulletin of mathematical biology</i>. (97.1% ROBOTICS; 1.3% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41744579" target="_blank">Research on a Hexapod Hybrid Robot with Wheel-Legged Locomotion and Bio-Inspired Jumping for Lunar Extreme-Terrain Exploration.</a></b> Han L, Li E, Jiang S, Xu K, Wang X, Ding X, Zhang C, <i>Biomimetics (Basel, Switzerland)</i>. (99.5% ROBOTICS; 0.1% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41744578" target="_blank">Walking on Uneven Terrain with Hexapod Robots Having Underactuated Legs and Articulated Body.</a></b> Doroftei I, <i>Biomimetics (Basel, Switzerland)</i>. (98.9% ROBOTICS; 0.3% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41744577" target="_blank">An Energy-Efficient Gas-Oil Hybrid Servo Actuator with Single-Chamber Pressure Control for Biomimetic Quadruped Knee Joints.</a></b> Yao M, Hua Z, Qian H, <i>Biomimetics (Basel, Switzerland)</i>. (96.9% ROBOTICS; 0.8% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41744566" target="_blank">Theoretical Dynamics Modeling of Pitch Motion and Obstacle-Crossing Capability Analysis for Articulated Tracked Vehicles Based on Myriapod Locomotion Mechanism.</a></b> Li N, Liu X, Chen H, Zhang Y, Zhang S, <i>Biomimetics (Basel, Switzerland)</i>. (66.2% ROBOTICS; 26.8% MODELING)<br />
<br />
<br />
<span style="font-size:16px"><b>*SPORT/EXERCISE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41738468" target="_blank">Perspectives and Evaluation of Aesthetic and Body Parts in Pirouette En-Dehors and En-Dedans: An Open-Ended Questionnaire Survey of Dancers and Teachers.</a></b> Tsubaki Y, Kuno-Mizumura M, <i>Journal of dance medicine &amp;amp; science : official publication of the International Association for Dance Medicine &amp;amp; Science</i>. (88.6% SPORT/EXERCISE; 2.3% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41736156" target="_blank">The effect of box height on joint stiffness performance in drop jumping: a cross sectional study.</a></b> G&amp;uuml;nay A, Kahraman MY, A&#351;&amp;ccedil;&#305; A, <i>BMC sports science, medicine &amp;amp; rehabilitation</i>. (91.2% SPORT/EXERCISE; 2.7% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41734092" target="_blank">Reliability of 10- and 30-Second Tethered Swimming Tests in Highly Trained Swimmers: Influence of Swimming Specialty, Sex, Performance Level, and Evaluator.</a></b> Couvertier M, Bretonneau Q, Monnet T, Samson M, Morales-Artacho A, Pla R, Bosquet L, Decatoire A, <i>International journal of sports physiology and performance</i>. (95.3% SPORT/EXERCISE; 2.1% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41730607" target="_blank">Hamstring force and stretch during progressively increasing running speeds and the eccentric phase of resistance training exercises commonly used for injury prevention and rehabilitation.</a></b> Breed R, Hulm S, Hickey JT, Timmins RG, Opar D, Banyard HG, Maniar N, <i>British journal of sports medicine</i>. (44.8% SPORT/EXERCISE; 38.8% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41722544" target="_blank">Do Pitching Biomechanics Differ Between Windup and Stretch Pitching Deliveries From a Dirt Surface Mound in College Baseball Pitchers?</a></b> Escamilla RF, Slowik JS, Imamura R, Thompson IS, Asuncion R, Aguinaldo AL, Fleisig GS, <i>Journal of applied biomechanics</i>. (98.8% SPORT/EXERCISE; 0.2% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41719009" target="_blank">Prevalence, Incidence, Severity, and Anatomical Location of Overuse Injuries in Male and Female Ballet Dancers: A Systematic Review and Meta-Analysis.</a></b> Rupendran R, Wadud AA, Davis RE, Taglia SG, Rusby TA, Angioi M, <i>Journal of dance medicine &amp;amp; science : official publication of the International Association for Dance Medicine &amp;amp; Science</i>. (96.1% SPORT/EXERCISE; 0.8% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41718606" target="_blank">The Effects of Neuromuscular Training and Additive Visual Biofeedback on Landing Biomechanics and Sensorimotor Brain Activity in Young Female Athletes.</a></b> Slutsky-Ganesh AB, Chaput M, Hogg JA, Zuleger TM, Kim H, Diekfuss JA, Anand M, Schille A, DiCesare C, Warren SM, Riehm CD, Schnittjer AJ, Farraye BT, Pierce S, Roe JW, Bennison J, Barber Foss KD, Simon JE, Riley MA, Myer GD, Grooms DR, <i>Medicine and science in sports and exercise</i>. (64.1% SPORT/EXERCISE; 14.6% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41727228" target="_blank">Test-retest reliability of kicking performance assessments over a 2-day interval in elite youth soccer players.</a></b> Carstensen J, Andersen TB, <i>PeerJ</i>. (98.4% SPORT/EXERCISE; 0.4% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41713454" target="_blank">Fundamental Motor Skills and Physical Activity: Short-Term but Not Sustained Associations Between Improved Locomotor Skills and Preschoolers' Physical Activity Following a Motor Skill Intervention.</a></b> Palmer SA, Palmer KK, Arslanian JP, Robinson LE, <i>Pediatric exercise science</i>. (88.0% SPORT/EXERCISE; 4.5% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41713462" target="_blank">Relationship Between Decomposition of Surface Electromyography Signals and Force Production: Analyzing Recovery From Intense Exercise.</a></b> Sousa MV, Priego-Quesada JI, Becker KM, Fonseca P, Ervilha UF, Vilas-Boas JP, <i>Journal of applied biomechanics</i>. (51.1% SPORT/EXERCISE; 38.0% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41713453" target="_blank">Greater Ankle Plantar Flexor Work Is Predictive of Better Running Economy on Steep Uphill Grades.</a></b> Robinson RM, Hahn ME, <i>Journal of applied biomechanics</i>. (92.8% SPORT/EXERCISE; 5.1% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41723071" target="_blank">Is Osgood-Schlatter's associated with an increased risk of pars fracture? A retrospective exploratory study of male academy football players.</a></b> Blanchard S, Holden S, Dadd L, Connery M, Cumming S, Williams S, <i>Journal of science and medicine in sport</i>. (41.0% SPORT/EXERCISE; 26.6% TRAUMA/IMPACT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41718197" target="_blank">Factors Influencing Excessive Dynamic Genu Valgum and the Effect on Post-Landing Movement Patterns: A Cross-Discipline Narrative Review.</a></b> Granger A, Patel AJ, Bonfim SK, de Silva C, <i>Journal of functional morphology and kinesiology</i>. (94.0% SPORT/EXERCISE; 1.3% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41725953" target="_blank">Functional data analysis of lower-limb joint kinematics during badminton lunges under fatigue.</a></b> Fang Y, Zhang X, Sun Y, Wu H, Pei H, Gao J, Liu J, Zhu Q, Gao Y, <i>Frontiers in bioengineering and biotechnology</i>. (89.2% SPORT/EXERCISE; 3.8% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41725682" target="_blank">Anthropometry and diagnostic aware deep learning for exercise assessment.</a></b> Reyes Leiva KM, Nikelova P, Cerny M, <i>Frontiers in medical technology</i>. (97.1% SPORT/EXERCISE; 1.0% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41716307" target="_blank">Relationship between upper-body strength and power and shooting accuracy: a comparison of non-disabled and wheelchair basketball athletes.</a></b> Yang Y, Johnson QR, Scott AA, Cabarkapa D, Fry AC, <i>Frontiers in sports and active living</i>. (99.3% SPORT/EXERCISE; 0.1% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41745665" target="_blank">Assessing High-Intensity Acceleration Efforts Using Local Positioning System-Introducing the Concept of the Relative Acceleration Threshold to Ice Hockey.</a></b> Bielmann C, Fischer-Sonderegger K, S&amp;ouml;hnlein Q, Taube W, Tschopp M, <i>Sports (Basel, Switzerland)</i>. (93.1% SPORT/EXERCISE; 3.7% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41744715" target="_blank">Wearable Biosensing and Machine Learning for Data-Driven Training and Coaching Support.</a></b> Madrigal-Cerezo R, Dom&amp;iacute;nguez-Sanz N, Mart&amp;iacute;n-Rodr&amp;iacute;guez A, <i>Biosensors</i>. (82.4% SPORT/EXERCISE; 8.3% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41717617" target="_blank">Correlation analysis of fundamental movement skills level and aquatic competence acquisition in children aged 4-6 years.</a></b> Li HY, Zhao GH, <i>Frontiers in public health</i>. (57.0% SPORT/EXERCISE; 15.8% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41720110" target="_blank">Role of Interventional Radiology in Managing High-Level Athletes: Beyond Conventional Infiltration Techniques.</a></b> Amoretti N, Ranc PA, Amoretti R, Isaac A, <i>Seminars in musculoskeletal radiology</i>. (58.7% SPORT/EXERCISE; 20.2% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41718190" target="_blank">Functional Design and Clinical Implications of Modern Soccer Footwear: A Comprehensive Narrative Review.</a></b> Demeco A, Marotta N, Megna M, Racinelli A, Pansera B, Frizziero A, Yosypchuk I, Palermi S, Vecchiato M, Lopresti E, de Sire A, Ammendolia A, <i>Journal of functional morphology and kinesiology</i>. (65.9% SPORT/EXERCISE; 10.4% HAND/FINGER/FOOT/TOE)<br />
<br />
<br />
<span style="font-size:16px"><b>*TENDON/LIGAMENT*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41736242" target="_blank">Artificial Intelligence-Based Exploration of the Relationship Between Running Motion Patterns and Achilles Tendon Stress in Inactive Adults Initiating a Running Program.</a></b> Zhang Z, Fan T, Wu J, Sun Y, <i>Scandinavian journal of medicine &amp;amp; science in sports</i>. (53.1% TENDON/LIGAMENT; 12.2% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41732882" target="_blank">Anterior Cruciate Ligament Injury Is Associated With Fast Twitch Hamstring Muscle Fiber Typology.</a></b> Tampere T, Denolf S, Lievens E, Witvrouw E, Victor J, Schuermans J, <i>Scandinavian journal of medicine &amp;amp; science in sports</i>. (73.5% TENDON/LIGAMENT; 12.2% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41739284" target="_blank">Neurocognitive Deficits Related to Ligamentous Ankle Injuries: A Systematic Review.</a></b> Corl&amp;ugrave;y H, Schampheleer E, Maricot A, Lathouwers E, Roelands B, Verschueren J, Tassignon B, <i>Sports medicine - open</i>. (66.3% TENDON/LIGAMENT; 9.2% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41736011" target="_blank">Investigation of the effects of morphometric characteristics of the foot on Achilles tendon rupture.</a></b> Hanbeyo&#287;lu O, Canbolat M, Burulday V, <i>BMC musculoskeletal disorders</i>. (61.1% TENDON/LIGAMENT; 35.6% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41732229" target="_blank">Mechanical Properties of Pediatric Knee Ligaments: A Cadaveric Study.</a></b> Sanchez M, Duru NO, Gupta A, Storaci H, Chan C, Pham N, Rohde M, Khoo B, Alayleh A, Sherman S, Ellis HB, Tompkins M, Wilson P, Green D, Ganley TJ, Shea KG, <i>Orthopaedic journal of sports medicine</i>. (97.4% TENDON/LIGAMENT; 0.6% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41719563" target="_blank">Comparison of 3 Suture Constructs on Upper One-third Subscapularis Tendon Tear Healing: An Animal Study Comparing Biomechanical, Histological, and Imaging Characteristics of Different Techniques.</a></b> Yang YT, Wang Z, Meng CY, Li XH, Zhang JM, Deng XH, Chen YQ, Ali MI, Long Y, Hou JY, Yang R, <i>The American journal of sports medicine</i>. (62.9% TENDON/LIGAMENT; 31.6% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41732225" target="_blank">Biomechanical Analysis of Antibiotic-Treated Tendon Grafts With Digital Image Correlation: A Comparison Between Vancomycin, Gentamycin, and Tobramycin Soaking Techniques.</a></b> Burton M, Pisini D, Flanigan E, Seidt J, Piscitani F, Magnussen RA, Kaeding CC, Barker T, Flanigan DC, <i>Orthopaedic journal of sports medicine</i>. (82.8% TENDON/LIGAMENT; 8.8% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41718205" target="_blank">Anterior Cruciate Ligament Reconstruction Failure: Etiology, Classification, and Revision Strategies-A Narrative Review.</a></b> Capece G, Sagliocco RJ, Bocchino G, De Fazio A, Di Gialleonardo E, Motassime AE, Messina D, Fernicola A, Maccauro G, Vitiello R, <i>Journal of functional morphology and kinesiology</i>. (73.3% TENDON/LIGAMENT; 16.1% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41719868" target="_blank">Differential mechanical behaviour of superficial and deep aponeurosis and tendon during in situ cyclic contractions of rabbit medial gastrocnemius muscle.</a></b> Ross SA, Waters-Banker C, Sawatsky A, Leonard TR, Herzog W, <i>Journal of biomechanics</i>. (55.9% TENDON/LIGAMENT; 39.5% MUSCLE)<br />
<br />
<br />
<span style="font-size:16px"><b>*TISSUE/BIOMATERIAL*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41731709" target="_blank">Moisture-Responsive Friction Adaptability: Rethinking the Conventional Skin Silicone Interfaces in Pressure Injury Prevention Dressing Designs.</a></b> Gefen A, Fisk J, Bagshaw LE, <i>International wound journal</i>. (86.2% TISSUE/BIOMATERIAL; 1.8% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41725084" target="_blank">Threshold Optimization of In Situ HAPnanoclay in Polymeric Scaffolds to Enhance Biomechanical Response.</a></b> Pashaki PV, Kumari P, Ravi P, Jaswandkar S, Noonan B, Katti KS, Katti DR, <i>Journal of biomedical materials research. Part A</i>. (86.9% TISSUE/BIOMATERIAL; 8.8% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41740483" target="_blank">Subcutaneous tissue structural feature identification using unsupervised machine learning.</a></b> Das S, Brindise MC, Payne JM, Solorio L, Tepole AB, Vlachos P, <i>Computers in biology and medicine</i>. (72.6% TISSUE/BIOMATERIAL; 20.1% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41735781" target="_blank">Self-Oscillating Helix Showing Amplified Winding and Unwinding Motions.</a></b> Chung T, Choi J, Kim H, Ki K, Enomoto T, Lee D, Shin S, Lee A, Sakai T, Kim YK, Yoshida R, Kim YS, <i>Advanced materials (Deerfield Beach, Fla.)</i>. (61.9% TISSUE/BIOMATERIAL; 27.2% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41735735" target="_blank">Micro/Nanoscale 3D Bioprinting: A Transformative Way to Modulate Cell/Tissue Growth and Function.</a></b> Meng Z, Han K, Huang X, Yao C, Gu B, Gao J, Zhao R, He J, <i>Advanced materials (Deerfield Beach, Fla.)</i>. (92.5% TISSUE/BIOMATERIAL; 3.6% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41733209" target="_blank">Melt Electrowriting High Resolution Poly(ethylene-co-vinyl acetate) Scaffolds for Soft Tissue Engineering.</a></b> Snow F, De Rauch D, Aguilar LMC, Millett D, McBride JW, Nisbet DR, Kita M, Pirogova E, Kapsa RMI, Quigley A, <i>Advanced healthcare materials</i>. (98.1% TISSUE/BIOMATERIAL; 0.5% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41718889" target="_blank">Scaffold Design: A Review of Material and Immune Modulation in Bone Tissue Engineering.</a></b> Selim M, Farag SA, Abdel-Jaber GT, Abdal-Hay A, Mousa HM, <i>Cell and tissue banking</i>. (62.0% TISSUE/BIOMATERIAL; 35.0% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41715270" target="_blank">From Fiber Architecture to Functional Attachment: A Clinically Relevant, Mechanically Tunable Cardiac Patch.</a></b> Braig J, Kent R, Goienetxe AG, Laita N, Wu M, Mart&amp;iacute;nez M&amp;Aacute;, Serra M, Janssens K, Urtaza U, Larequi E, Anaut-Lusar I, Gillijns H, Algoet M, van Kerkhof B, van der Knaap M, Cedillo-Servin G, Castilho M, van Mil A, Sluijter JPG, Malda J, Claus P, Bovendeerd PHM, Pe&amp;ntilde;a E, Doblare M, Oosterlinck W, Janssens S, Zaldua AM, Iglesias-Garc&amp;iacute;a O, Pr&amp;oacute;sper F, Vega MMM, Groll J, J&amp;uuml;ngst T, <i>Advanced materials (Deerfield Beach, Fla.)</i>. (46.1% CARDIOVASCULAR/CARDIOPULMONARY; 40.0% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41722465" target="_blank">Recapitulating apicobasal tissue polarity in extracellular matrix-incorporated airway organoids.</a></b> Gong Z, Bhattaram D, Porritt L, Golestan K, Barati Farimani A, Deng B, Ryan AL, Weiss DJ, Ren X, <i>Biomaterials</i>. (56.0% TISSUE/BIOMATERIAL; 39.3% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41719809" target="_blank">3D-printed CF-PLA bone plates with metamaterial structures: Design, fabrication, and mechanical evaluation.</a></b> Daniel A, Bakhtiari H, Nouri A, Das BK, Aamir M, Tolouei-Rad M, <i>Journal of the mechanical behavior of biomedical materials</i>. (81.8% TISSUE/BIOMATERIAL; 7.7% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41725960" target="_blank">Patient-specific 3D cryo(bio)printing of a glenoid labrum scaffold for fibrocartilaginous tissue engineering.</a></b> da Silva FT, de Souza CM, Stocco TD, <i>Frontiers in bioengineering and biotechnology</i>. (51.6% TISSUE/BIOMATERIAL; 39.9% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41729119" target="_blank">Comparative Evaluation of Topical Stabilized Retinaldehyde 0.1% vs. 0.05% on Skin Biophysical and Biomechanical Parameters.</a></b> Deda A, Odrzywo&#322;ek W, Lebiedowska A, Bany&#347; A, Bo&#380;ek M, Kuca D, Wi&#347;niewska N, Wcis&#322;o-Dziadecka D, Wilczy&#324;ski S, <i>Skin research and technology : official journal of International Society for Bioengineering and the Skin (ISBS) and International Society for Digital Imaging of Skin (ISDIS) and International Society for Skin Imaging (ISSI)</i>. (74.8% TISSUE/BIOMATERIAL; 3.9% HAND/FINGER/FOOT/TOE)<br />
<br />
<br />
<span style="font-size:16px"><b>*TRAUMA/IMPACT*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41739528" target="_blank">Clarifying the Impact of Low-Level Blast Exposure on Service Members' Brains: A Scientific Perspective on a Media Report.</a></b> Yuan TT, Hoppes CW, Mejia-Alvarez R, Tartis M, Ho VB, Willis AM, <i>Military medicine</i>. (98.8% TRAUMA/IMPACT; 0.5% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41733366" target="_blank">Development of a 5th percentile Chinese female pedestrian injury bionic model and certification in accordance with Euro NCAP CP540.</a></b> Zhao H, Li H, Wang Y, He L, Cui S, Lv W, Ruan JS, <i>Computer methods in biomechanics and biomedical engineering</i>. (89.5% TRAUMA/IMPACT; 6.6% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41740636" target="_blank">Behavioral consequences of organophosphorus poisoning: insights from human exposures and rodent models.</a></b> Bel R, Champault A, Dorandeu F, Thibault K, Dal Bo G, <i>Neuroscience and biobehavioral reviews</i>. (40.4% TRAUMA/IMPACT; 26.1% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41723929" target="_blank">Noninvasive mapping of shear strain predicts the anatomical distribution of mild traumatic brain injury.</a></b> Hirad AA, Mix D, Venkataraman A, Meyers SP, Mahon BZ, <i>NeuroImage. Clinical</i>. (96.9% TRAUMA/IMPACT; 0.9% METHODS)<br />
<br />
<br />
<span style="font-size:16px"><b>*VETERINARY/AGRICULTURAL*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41734949" target="_blank">Torsional flexibility of the thoracic spine is superior to that of the lumbar spine in cats: Implications for the falling cat problem.</a></b> Higurashi Y, Kaino Y, Habara M, Okamoto S, Yoshizaki K, Sakurai M, Morimoto M, <i>Anatomical record (Hoboken, N.J. : 2007)</i>. (95.5% VETERINARY/AGRICULTURAL; 3.5% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41724468" target="_blank">Standardizing case definitions for hoof lesions and lameness: A scoping review to improve machine learning applications in dairy cattle.</a></b> Swartz D, Nault A, Cramer G, <i>Journal of dairy science</i>. (99.0% VETERINARY/AGRICULTURAL; 0.5% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41719693" target="_blank">Tricortical pin tension-band wiring provides the greatest tensile resistance among fixation constructs for feline greater trochanteric avulsion fractures.</a></b> Lee Y, Jang SK, Do J, Kim MY, Lee S, Kim JM, Kim HY, <i>American journal of veterinary research</i>. (99.2% VETERINARY/AGRICULTURAL; 0.2% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41713833" target="_blank">Physiological and behavioral traits in female guinea pigs: estrous cycle effects and repeatability.</a></b> Kadri&#263; RC, Angori CR, Millesi E, Nemeth M, <i>Physiology &amp;amp; behavior</i>. (84.3% VETERINARY/AGRICULTURAL; 9.3% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41713523" target="_blank">Effect of palmar digital perineural analgesia (as a model for &quot;nerving&quot;) on forelimb loading over varied surfaces at the walk and trot - a pilot study.</a></b> Zimmerman-Cameron SR, Colbath AC, Caruso MA, Hoffman RM, Logan AA, <i>Journal of equine veterinary science</i>. (99.4% VETERINARY/AGRICULTURAL; 0.2% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41723956" target="_blank">Evaluating the effects of dietary glutamine on bone geometry, mechanical properties, and mineral composition in laying quail.</a></b> Tomaszewska E, Kasperek K, Drabik K, Puzio I, &#346;wietlicka I, Batkowska J, W&amp;oacute;jcik M, Kami&#324;ski D, <i>Poultry science</i>. (92.7% VETERINARY/AGRICULTURAL; 4.7% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41728131" target="_blank">Trimming of nails in healthy dogs does not change gait parameters when comparing pre- and post-nail trim.</a></b> H&amp;auml;usler K, S&amp;ouml;hnel K, <i>Frontiers in veterinary science</i>. (96.2% VETERINARY/AGRICULTURAL; 3.0% COMPARATIVE)<br />
<br />
<br />
<span style="font-size:16px"><b>*VISUAL/VESTIBULAR*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41742098" target="_blank">Comparison of corneal biomechanics after SMILE versus LASEK in moderate to high myopia with relatively thin corneas: a retrospective comparative study.</a></b> Zhang R, Zhong Y, Wu H, You Y, Su X, Li Y, Zhou X, Wang N, <i>BMC ophthalmology</i>. (91.3% VISUAL/VESTIBULAR; 5.7% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41736284" target="_blank">A computational model for retinal haemodynamics under gravitational and postural variations.</a></b> Nigro M, Montanino A, Soudah E, <i>The Journal of physiology</i>. (88.3% VISUAL/VESTIBULAR; 7.2% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41734035" target="_blank">The efficacy, safety and predictability in transepithelial photorefractive keratectomy versus LASIK/SMILE: A meta-analysis.</a></b> Serf&amp;ouml;z&amp;ouml; A, Abu Dail Y, Munteanu C, Hoxha Z, Seitz B, Daas L, <i>European journal of ophthalmology</i>. (89.3% VISUAL/VESTIBULAR; 3.8% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41729794" target="_blank">Epithelial thickness and tomographic characteristics in central keratoconus: A comparative analysis of cross-linked and untreated eyes.</a></b> Yigit Y, Sahin Vural G, <i>European journal of ophthalmology</i>. (86.8% VISUAL/VESTIBULAR; 9.9% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41728614" target="_blank">Incision of the pre-Descemet layer and Descemet membrane affects outflow facility: ex-vivo studies on a human eye perfusion model.</a></b> Sahay P, Yildiz BK, Filippini P, Masood I, Dua HS, <i>Frontiers in medicine</i>. (91.6% VISUAL/VESTIBULAR; 7.1% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41733420" target="_blank">In Vivo Evaluation of Efficacy and Safety of Oxygen-Supplemented Accelerated Scleral Cross-Linking Over Time in Young Rabbits.</a></b> Ben Hilal H, Zhang J, Liu X, Chen P, Han P, Yan L, Jiang Z, Wang C, Li X, Gao Z, Chen W, <i>Translational vision science &amp;amp; technology</i>. (88.7% VISUAL/VESTIBULAR; 5.4% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41718338" target="_blank">Multiscale Integration of Acceleration and Jerk Sensing in the Vestibular System.</a></b> Manzari L, <i>Audiology research</i>. (79.2% VISUAL/VESTIBULAR; 14.5% NEURAL)<br />
<br />
<br />
<span style="font-size:16px"><b>*PICK OF THE WEEK*</b></span><br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/41740439" target="_blank">Running with an exotendon reduces compressive knee contact force.</a></b> Stingel J, Haralabidis N, Hicks J, Uhlrich S, Delp S, <i>Journal of biomechanics</i>. (48.0% GAIT/LOCOMOTION; 40.0% SPORT/EXERCISE)&#8203;&#8203;]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/literature-update">Literature Update</category>
			<dc:creator>Jessica Murawski</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/literature-update/49356-literature-update-feb-20-2026-feb-26-2026</guid>
		</item>
		<item>
			<title>Postdoctoral Research Position in Orthodontic Biomechanics - Purdue University</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49354-postdoctoral-research-position-in-orthodontic-biomechanics-purdue-university</link>
			<pubDate>Thu, 26 Feb 2026 16:20:17 GMT</pubDate>
			<description>(https://nam04.safelinks.protection.outlook.com/?url=https%3A%2F%2Fwww.purdue.edu%2F%3Futm_source%3Dsignature%26utm_medium%3Demail%26utm_campaign%3Dpu...</description>
			<content:encoded><![CDATA[<span style="font-family:Calibri"><a href="https://nam04.safelinks.protection.outlook.com/?url=https%3A%2F%2Fwww.purdue.edu%2F%3Futm_source%3Dsignature%26utm_medium%3Demail%26utm_campaign%3Dpurdue&amp;data=05%7C02%7Cchenj%40purdue.edu%7C54fc7f46d9644d82812408ddadb8ee0d%7C4130bd397c53419cb1e58758d6d63f21%7C0%7C0%7C638857731961217531%7CUnknown%7CTWFpbGZsb3d8eyJFbXB0eU1hcGkiOnRydWUsIlYiOiIwLjAuMDAwMCIsIlAiOiJXaW4zMiIsIkFOIjoiTWFpbCIsIldUIjoyfQ%3D%3D%7C0%7C%7C%7C&amp;sdata=7faxLrQBlNn2lhRX3HpU2ScfWbdWkbhDyczN40%2FetpE%3D&amp;reserved=0" target="_blank"><span style="font-family:&amp;amp"><span style="color:black"><a href="filedata/fetch?id=49355&amp;d=1772122765&amp;type=thumb" title="Name:  dataurl765039.png
Views: 33
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<span style="font-family:Calibri"><b><u><span style="font-family:&amp;amp">Postdoctoral Research Position in Orthodontic Biomechanics</span></u></b></span><br />
<span style="font-family:Calibri"><span style="font-family:&amp;amp">An NIH-funded postdoctoral research position is immediately available at Purdue University, Indiana, USA. The Dental Biomechanics lab is developing new technologies to accelerate orthodontic tooth movement. Research tasks include finite element analysis, instrumentation design, animal experiment, biological analysis, and CT image analysis. The postdoctoral scholar will also be expected to coordinate with a multidisciplinary team, including engineers, biologist, statistician, and dentists. </span></span><br />
<span style="font-family:Calibri"><b><span style="font-family:&amp;amp">Qualifications:</span></b><span style="font-family:&amp;amp"> Before starting the position, applicants should have completed a PhD in mechanical, biomedical engineering, or a related field, preferably with a concentration in biomechanics. A highly motivated candidate with an experimental background, a strong publication record, and knowledge of biological systems is preferred. Good written and verbal communication skills is required. Applicants will be expected to integrate into a multidisciplinary biomechanical/biomedical engineering laboratory comprised of faculty, postdocs, graduate students, and undergraduate students. </span></span><br />
<span style="font-family:Calibri"><b><span style="font-family:&amp;amp">The Dental Biomechanics lab:</span></b><span style="font-family:&amp;amp"> Dr. Jie Chen&#8217;s lab is located near Indianapolis downtown. Dr. Chen is a member of the Indiana Center for Musculoskeletal Health, which brings together large and diverse group of 40+ musculoskeletal researchers.</span></span><br />
<span style="font-family:Calibri"><b><span style="color:#222222">Application Process: </span></b><span style="font-family:&amp;amp"><span style="color:#222222"> Please email your letter of application, CV, including the names and contact information of three references, to Dr. Jie Chen at <i><u>chenj@purdue.edu</u></i>. Review of applications will begin immediately and proceed until the position is filled.</span></span></span><br />
<span style="font-family:&amp;amp"><b>Responsibilities:</b></span><br />
<span style="font-family:&amp;amp">- Conduct research experiments and studies in the field of orthodontic tooth movement and dental biomechanics</span><br />
<span style="font-family:&amp;amp">- Assist in the design, implementation, and analysis of animal studies</span><br />
<span style="font-family:&amp;amp">- Conduct finite element analysis, instrumentation design, and CT image analysis</span><br />
<span style="font-family:&amp;amp">- Conduct animal experiments</span><br />
<span style="font-family:&amp;amp">- Prepare reports, presentations, and publications based on research findings</span><br />
<span style="font-family:&amp;amp">- Manage the lab and experiments</span><br />
<span style="font-family:&amp;amp">Skills:</span><br />
<span style="font-family:&amp;amp">- Good knowledge of bone physiology and biomechanics, Experience with finite element methods, Familiarity with experimental biomechanics, Experience with basic programming, Excellent analytical and problem-solving skills, Ability to handle animal experiments, Ability to work independently and collaboratively in a team environment, Attention to detail in conducting experiments, collecting data, and documenting results, and Excellent communication skills</span><br />
<span style="font-family:&amp;amp">Note: This job description is intended to provide a general overview of the position. It is not an exhaustive list of all responsibilities, skills, or qualifications required for the role.</span><br />
<br />
&#8203;]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions">Jobs and Positions</category>
			<dc:creator>jchen3</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49354-postdoctoral-research-position-in-orthodontic-biomechanics-purdue-university</guid>
		</item>
		<item>
			<title>PostDoc fellowship opportunity at Stockholm - Video-Based 3D Human Kinematics Extraction/Pose Esitimation!</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49352-postdoc-fellowship-opportunity-at-stockholm-video-based-3d-human-kinematics-extraction-pose-esitimation</link>
			<pubDate>Wed, 25 Feb 2026 14:46:48 GMT</pubDate>
			<description><![CDATA[Are you - or someone you know - interested in applying Video-Based 3D Human Kinematics Extraction/Pose Esitimation for Accident Reconstruction? We&#8217;re...]]></description>
			<content:encoded><![CDATA[<span style="font-family:Aptos"><span style="font-family:&amp;amp">Are you - or someone you know - interested in applying Video-Based 3D Human Kinematics Extraction/Pose Esitimation for Accident Reconstruction? We&#8217;re currently seeking motivated researchers to join us through the DigitalFuture Postdoctoral Fellowship Program in Stockholm to improve human safety!</span></span><br />
<span style="font-family:Aptos"><a href="https://www.digitalfutures.kth.se/call/up-to-ten-postdoc-fellows-in-technologies-for-digital-transformation-3/" target="_blank"><span style="font-family:&amp;amp">https://www.digitalfutures.kth.se/call/up-to-ten-postdoc-fellows-in-technologies-for-digital-transformation-3/</span></a></span><br />
<br />
<br />
<span style="font-family:Aptos"><b><span style="font-family:&amp;amp">Application</span></b><br />
<br />
<span style="font-family:&amp;amp">You send your CV via email to </span><a href="mailto:zhouz@kth.se"><span style="font-family:&amp;amp">zhouz@kth.se</span></a><span style="font-family:&amp;amp">&#8203;. Happy to discuss ideas and draft the 1-page proposal together. </span></span><br />
&#8203;]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions">Jobs and Positions</category>
			<dc:creator>zhouzhoukth</dc:creator>
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