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		<title>Biomch-L - Biomch-L forums</title>
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			<title>Biomch-L - Biomch-L forums</title>
			<link>https://biomch-l.isbweb.org/</link>
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			<title>LITERATURE UPDATE May 08, 2026 - May 14, 2026</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/literature-update/49484-literature-update-may-08-2026-may-14-2026</link>
			<pubDate>Fri, 15 May 2026 18:15:34 GMT</pubDate>
			<description><![CDATA[LITERATURE UPDATE 
May 08, 2026 - May 14, 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 />
May 08, 2026 - May 14, 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>.&#8203;&#8203;<br />
<br />
Biomch-L LinkedIn: <a href="https://www.linkedin.com/in/biomch-l-06359638a/" target="_blank">https://www.linkedin.com/in/biomch-l-06359638a/</a>.<br />
<br />
<br />
<br />
<span style="font-size:16px"><b>*BONE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42119027" target="_blank">Intratrabecular bone remodeling - a previously overlooked mode of remodeling hyperactivated by parathyroid hormone.</a></b> Thomsen LK, Laursen KS, Sikj]]></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/49484-literature-update-may-08-2026-may-14-2026</guid>
		</item>
		<item>
			<title>Funded PhD Scholarship exploring the fit, comfort, and functionality of mounted police protective equipment - University of Huddersfield, UK</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49482-funded-phd-scholarship-exploring-the-fit-comfort-and-functionality-of-mounted-police-protective-equipment-university-of-huddersfield-uk</link>
			<pubDate>Thu, 14 May 2026 18:33:25 GMT</pubDate>
			<description>We are seeking applicants for a fully-funded PhD scholarship at the University of Huddersfield (UK), exploring the fit, comfort, and functionality of...</description>
			<content:encoded><![CDATA[We are seeking applicants for a fully-funded PhD scholarship at the University of Huddersfield (UK), exploring the fit, comfort, and functionality of mounted police protective equipment.<br />
<br />
The project will be supervised by Dr Joanna Blackburn (The University of Huddersfield) and Dr Sean hudson (York St John University) and will be conducted in collaboration with regional mounted police units in the UK.<br />
<br />
The findings will generate practical evidence to inform the design of safer, more comfortable, and more functional protective equipment, with the potential to improve officer welfare, enhance operational performance, and contribute to future national standards for mounted police equipment.<br />
<br />
<span style="font-family:&amp;amp"><span style="font-family:&amp;amp"><span style="color:#0a0a0b">You can find more information about the position and how to apply by clicking on the Feasibility of Improving PPE project at </span></span><a href="https://www.hud.ac.uk/postgraduate/research/research-scholarships/health-science-and-healthcare/" target="_blank"><span style="font-family:&amp;amp">https://www.hud.ac.uk/postgraduate/research/research-scholarships/health-science-and-healthcare/</span></a></span><br />
<br />
Please email Dr Joanna Blackburn (<a href="mailto:J.Blackburn3@hud.ac.uk">J.Blackburn3@hud.ac.uk</a>) or Dr Sean Hudson (<a href="mailto:s.hudson@yorksj.ac.uk">s.hudson@yorksj.ac.uk</a>) if you have any questions.&#8203;<br />
<br />
<span style="font-family:&amp;amp"><b><span style="font-family:&amp;amp"><span style="color:#0a0a0b">Application deadline</span></span></b><span style="font-family:&amp;amp"><span style="color:#0a0a0b"> <b>-</b> Friday 19th June 2026</span></span></span><br />
<b><span style="font-family:&amp;amp"><span style="color:#0a0a0b">Funding - </span></span></b>3 years full-time research covering tuition fees and a tax-free bursary (stipend) starting at 21,805 GBP for 2026/27]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions">Jobs and Positions</category>
			<dc:creator>Sean Hudson</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49482-funded-phd-scholarship-exploring-the-fit-comfort-and-functionality-of-mounted-police-protective-equipment-university-of-huddersfield-uk</guid>
		</item>
		<item>
			<title>Mobilize and FAIR Centers Webinar: Accelerating Biomarker Discovery through Large-Scale Motion Capture Using OpenCap</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/events-and-conferences/49481-mobilize-and-fair-centers-webinar-accelerating-biomarker-discovery-through-large-scale-motion-capture-using-opencap</link>
			<pubDate>Thu, 14 May 2026 17:35:19 GMT</pubDate>
			<description>The Mobilize and FAIR Centers at Stanford University invite you to join our next webinar, featuring Parker Ruth from Stanford University. 
 
DETAILS...</description>
			<content:encoded><![CDATA[The Mobilize and FAIR Centers at Stanford University invite you to join our next webinar, featuring Parker Ruth from Stanford University.<br />
<br />
DETAILS<br />
<br />
Title: Accelerating Biomarker Discovery through Large-Scale Motion Capture Using OpenCap<br />
Speaker: Parker Ruth, Department of Computer Science, Stanford University<br />
Time: Wednesday, June 24, 2026 at 9:00 AM Pacific Time<br />
<br />
Registration: <a href="https://stanford.zoom.us/webinar/register/WN_lzDMOTZ1RHKLA9QI4YFXmg#/registration" target="_blank">Click here to register</a><br />
<br />
ABSTRACT<br />
<br />
Markerless motion capture technologies like OpenCap can expand opportunities for collecting human motion datasets outside the limitations of traditional motion capture laboratories. Parker Ruth and colleagues from the Stanford Neuromuscular Biomechanics Lab have used OpenCap to conduct large-scale human movement data collection events to develop more quantitative and sensitive outcome measures for neuromuscular diseases, including myotonic dystrophy, facioscapulohumeral muscular dystrophy, and Charcot-Marie-Tooth disease. Large-scale data collections have allowed them to record a battery of nine activities from up to one hundred participants in one weekend, leading to the largest biomechanics datasets for these diseases to date.<br />
<br />
In this two-part webinar, Mr. Ruth will share his team&#8217;s process and best practices gained from the past three years of large-scale OpenCap data collection.<br />
<br />
In the first part, he will describe the latest findings from their large-scale study of neuromuscular disease biomechanics. He will share how these findings emerged from their fruitful collaboration with neurology and physical therapy experts to collaboratively conceive the study and develop domain-informed and interpretable data representations.<br />
<br />
In the second part, he will share a process and best practices for planning similar large-scale human movement data collection events with OpenCap, including study design, logistics, and data management and sharing.<br />
<br />
Ruth, P. S., Uhlrich, S. D., de Monts, C., Falisse, A., Muccini, J., Covitz, S., Vogt-Domke, S., Day, J., Duong, T., &amp; Delp, S. L. (2025). <a href="https://ai.nejm.org/doi/abs/10.1056/AIoa2401137" target="_blank">Video-Based Biomechanical Analysis Captures Disease-Specific Movement Signatures of Different Neuromuscular Diseases</a>. New England Journal of Medicine AI, 2(9).<br />
&#8203;]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/events-and-conferences">Events and Conferences</category>
			<dc:creator>Matt Petrucci</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/events-and-conferences/49481-mobilize-and-fair-centers-webinar-accelerating-biomarker-discovery-through-large-scale-motion-capture-using-opencap</guid>
		</item>
		<item>
			<title>Research Professor in Clinical Motion Analysis at KU Leuven, Belgium</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49479-research-professor-in-clinical-motion-analysis-at-ku-leuven-belgium</link>
			<pubDate>Mon, 11 May 2026 15:10:51 GMT</pubDate>
			<description><![CDATA[We&#8217;re hiring a Research Professor in Clinical Motion Analysis at KU Leuven (https://www.linkedin.com/company/ku_leuven/)! 
 
Are you driven to...]]></description>
			<content:encoded><![CDATA[We&#8217;re hiring a Research Professor in Clinical Motion Analysis at <a href="https://www.linkedin.com/company/ku_leuven/" target="_blank"><b>KU Leuven</b></a>!<br />
<br />
Are you driven to understand and improve movement in people with childhood&#8209;onset neuromotor disabilities? Join <a href="https://www.linkedin.com/company/ku_leuven/" target="_blank"><b>KU Leuven</b></a> (Belgium)&#8212;at the heart of Europe&#8212;and lead cutting&#8209;edge research in 3D clinical motion analysis, pathological gait, and neuromuscular mechanisms, from childhood into adulthood.<br />
<br />
We&#8217;re looking for an outstanding researcher with a strong international profile and leadership potential. You&#8217;ll work with state&#8209;of&#8209;the&#8209;art technologies, help push future methodological innovations, and shape preventive, tech&#8209;assisted rehabilitation and exercise interventions. The position is embedded in the Neurorehabilitation Research Group and closely linked to the Clinical Motion Analysis Laboratory at the University Hospitals Leuven (campus Pellenberg).<br />
<br />
Check the requirements for a research professorship at KU Leuven: <a href="https://research.kuleuven.be/gedocumenteerd/en/41841" target="_blank">https://research.kuleuven.be/gedocumenteerd/en/41841</a>&#8203;<br />
<br />
Apply no later than the 1st of September via the online application tool: <a href="https://www.kuleuven.be/personeel/jobsite/jobs/60633510?lang=en" target="_blank">https://www.kuleuven.be/personeel/jo...633510?lang=en</a>&#8203;]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions">Jobs and Positions</category>
			<dc:creator>Lennart Scheys</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49479-research-professor-in-clinical-motion-analysis-at-ku-leuven-belgium</guid>
		</item>
		<item>
			<title>LITERATURE UPDATE May 01, 2026 - May 07, 2026</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/literature-update/49475-literature-update-may-01-2026-may-07-2026</link>
			<pubDate>Thu, 07 May 2026 22:09:37 GMT</pubDate>
			<description><![CDATA[LITERATURE UPDATE 
May 01, 2026 - May 07, 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 />
May 01, 2026 - May 07, 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>.&#8203;<br />
<br />
Biomch-L LinkedIn: <a href="https://www.linkedin.com/in/biomch-l-06359638a/" target="_blank">https://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/42092685" target="_blank">Dual-Energy CT Assessment of Distal Femur Bone quality for Preventing Early Failure in Cementless Total Knee Arthroplasty.</a></b> Sohn S, Kwak DS, Lee SW, Cho N, Lee SH, Jun Koh I, <i>Orthopaedics &amp;amp; traumatology, surgery &amp;amp; research : OTSR</i>. (71.9% BONE; 11.8% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42068423" target="_blank">The Use of Statistical Shape and Appearance Modelling for Predicting Osteoporotic Fracture Risk.</a></b> Chu EM, Quenneville CE, <i>Current osteoporosis reports</i>. (91.7% BONE; 4.4% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42061911" target="_blank">A clinically applicable energy-based approach for evaluating bone strength.</a></b> Bai Q, Li J, Ma C, Cao G, Wang Y, He D, Lu S, Yang Q, Gao Y, Tian J, Cheng K, Zhao Y, <i>Bone &amp;amp; joint research</i>. (95.1% BONE; 2.9% METHODS)<br />
<br />
<br />
<span style="font-size:16px"><b>*BOTANY*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42085734" target="_blank">Parasitic interactions modulate the physiological responses of Gammarus fossarum to the herbicide metazachlor.</a></b> Nahar N, Asghar A, Schmidt TC, Sures B, <i>Ecotoxicology and environmental safety</i>. (59.1% BOTANY; 17.5% COMPARATIVE)<br />
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<br />
<span style="font-size:16px"><b>*CARDIOVASCULAR/PULMONARY*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42082459" target="_blank">Geometric and density relationships of calcification clusters in carotid atherosclerosis.</a></b> Bierens J, Scicolone R, Nardi V, Benson J, Balestrieri A, Incollu A, Suri JS, Song J, Lanzino G, Kooi ME, Saba L, <i>The neuroradiology journal</i>. (95.5% CARDIOVASCULAR/CARDIOPULMONARY; 1.6% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42091548" target="_blank">A case of late retrograde type A aortic dissection after hybrid aortic arch repair.</a></b> Ishida K, Seto Y, Takase S, <i>Fukushima journal of medical science</i>. (86.2% CARDIOVASCULAR/CARDIOPULMONARY; 6.7% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42093916" target="_blank">Comparing biomechanical platelet activation in the carotid artery by computational and experimental modeling.</a></b> Guntupalli S, Malloy JS, Din Abdul Jabbar MA, Park HE, Alkhalfan F, Kondratiuk K, Mahlay NF, Aggarwal A, McIntyre T, Godwin M, Cameron SJ, Rayz VL, <i>Blood vessels, thrombosis &amp;amp; hemostasis</i>. (89.0% CARDIOVASCULAR/CARDIOPULMONARY; 8.2% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42067513" target="_blank">Viscoelasticity of the Heart: An Overview of Viscoelastic Measurements at Different Scales.</a></b> Gionet-Gonzales M, Torres GV, Stowers RS, Pruitt BL, <i>Annual review of biomedical engineering</i>. (94.4% CARDIOVASCULAR/CARDIOPULMONARY; 1.4% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42065785" target="_blank">Dysfunctional breathing in patients with moderate and severe obstructive sleep apnea: a cross sectional study.</a></b> Pawar M, Venkatesan P, Mysore S, Bhat G, R VL, <i>Sleep &amp;amp; breathing = Schlaf &amp;amp; Atmung</i>. (18.9% CARDIOVASCULAR/CARDIOPULMONARY; 9.8% DENTAL/ORAL/FACIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42064758" target="_blank">Application of multimodal ultrasound in the biomechanical evaluation of carotid intima-media thickness in type 2 diabetes mellitus: a focus on subclinical vascular changes.</a></b> Nan X, Tang L, Fang X, Yang X, Kang Y, <i>Frontiers in endocrinology</i>. (92.9% CARDIOVASCULAR/CARDIOPULMONARY; 2.0% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42080143" target="_blank">Cardiac Fibrosis: Mechanobiology, Epigenetics, and the Path to Precision Therapy.</a></b> Hamouz M, Hammouz RY, Caruana C, Micallef D, Bednarek AK, Dingli P, <i>Cellular and molecular bioengineering</i>. (84.6% CARDIOVASCULAR/CARDIOPULMONARY; 6.8% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42078199" target="_blank">Advances in the pathogenesis and clinical management of pulmonary hypertension.</a></b> Yan Y, Xu Z, Zhou Y, Wang X, Zhang H, <i>Medical review (2021)</i>. (97.2% CARDIOVASCULAR/CARDIOPULMONARY; 1.0% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42073395" target="_blank">Clinical Efficacy and Biomechanical Behavior of Different Compression Systems in Venous Ulcers: Pressure, Stiffness and Healing.</a></b> Jim&amp;eacute;nez Garc&amp;iacute;a JF, Garc&amp;iacute;a Ruiz MP, Jim&amp;eacute;nez FG, Gutierrez Garc&amp;iacute;a M, Jim&amp;eacute;nez La&amp;iacute;nez JL, Mu&amp;ntilde;oz Condez M, Fern&amp;aacute;ndez Ramirez AB, Garc&amp;iacute;a Fern&amp;aacute;ndez FP, <i>Life (Basel, Switzerland)</i>. (47.8% CARDIOVASCULAR/CARDIOPULMONARY; 6.1% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42072195" target="_blank">Viscoelastic Properties of Porcine Pericardium Under Biaxial Tensile Creep and Stress Relaxation: Application for Novel Aortic Valve Bioprosthesis Design.</a></b> Matjeka E, Kuchumov AG, Ngwangwa HM, Pandelani T, Nemavhola F, <i>Bioengineering (Basel, Switzerland)</i>. (51.8% CARDIOVASCULAR/CARDIOPULMONARY; 41.2% 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/42088832" target="_blank">Submolecular modulation of PIEZO1 mechanotransduction with wireless tailor-made nanoswitches.</a></b> Teixeira SPB, Pardo A, Taboada P, Bijonowski BM, Carvalho MT, Nieder JB, Wolleb M, Snedeker JG, Gomes ME, Domingues RMA, <i>Bioactive materials</i>. (38.9% CELLULAR/SUBCELLULAR; 18.4% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42067290" target="_blank">Highly amphiphilicity-tailorable pineapple-like janus nanozymes with superior kinematic locomotion facilitates biphasic chemiluminescence analysis.</a></b> Jiang X, Wei W, Zhao Y, Zhang L, Wang W, Zhao Y, Zhu Z, Fu Z, Zhu C, Ouyang H, <i>Analytica chimica acta</i>. (73.2% CELLULAR/SUBCELLULAR; 11.6% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42088733" target="_blank">Viscous drag-induced self-regeneration of laser-dissected actin stress fibers: A potential mechanism for mechanical memory.</a></b> Nagayama K, <i>Mechanobiology in medicine</i>. (71.1% CELLULAR/SUBCELLULAR; 19.5% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42095096" target="_blank">NCKAP1 coordinates focal adhesion and adherens junction dynamics in endothelial barrier maintenance and angiogenesis.</a></b> Xiao Y, Mendez PL, Hiepen C, Jatzlau J, Knaus P, <i>iScience</i>. (90.0% CELLULAR/SUBCELLULAR; 5.1% CARDIOVASCULAR/CARDIOPULMONARY)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42086034" target="_blank">Organelle mechanics: A brace for the Plasmodium basal body.</a></b> Engstler M, <i>Current biology : CB</i>. (92.8% CELLULAR/SUBCELLULAR; 1.2% COMPARATIVE)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42083429" target="_blank">CTSS/GSDMD Axis-Mediated Pyroptosis Mediates Tight Junction Disruption and Inflammatory Response Induced by Samarium Oxide in Zebrafish.</a></b> Pu R, Liu Y, Zou B, Zhang X, Wang X, Yin H, Jia X, Bi Y, <i>Journal of applied toxicology : JAT</i>. (59.0% CELLULAR/SUBCELLULAR; 18.9% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42068819" target="_blank">An improved electrophysiological cellular assay to unlock the pharmacological modulation of the NALCN channelosome.</a></b> Thongsepee N, Typou A, Baudat R, Tanner JA, Del Pino I, Dwyer DS, Lory P, Monteil A, <i>Biomedicine &amp;amp; pharmacotherapy = Biomedecine &amp;amp; pharmacotherapie</i>. (71.3% CELLULAR/SUBCELLULAR; 8.8% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42069172" target="_blank">Transcriptomic alterations upon nuclear XIAP overexpression reveal IGFBP6/Wnt as a regulatory axis in breast cancer cell survival and chemoresistance.</a></b> Dos Santos Mendon&amp;ccedil;a B, Binato R, Abdelhay E, Lima NS, de Araujo WM, Maia RC, Carvalho RS, de Moraes GN, <i>European journal of pharmacology</i>. (97.4% CELLULAR/SUBCELLULAR; 1.2% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42078504" target="_blank">Intrinsic stochasticity in cell polarity and contact inhibition of locomotion.</a></b> Kryvoruchko M, Camley BA, <i>ArXiv</i>. (98.0% CELLULAR/SUBCELLULAR; 0.3% MODELING)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42079374" target="_blank">Insights into Human Ciliopathies: Gene Silencing of ropn1l and tex9 in Schmidtea mediterranea Indicate Association with Ciliary Structure and Motility.</a></b> Pitt R, Gogoi C, Calnan A, Patnaik L, Johnson KC, <i>microPublication biology</i>. (88.0% CELLULAR/SUBCELLULAR; 3.6% COMPARATIVE)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42063579" target="_blank">Autophagy: mechanisms, roles in human diseases, and therapeutic perspectives.</a></b> He J, Qi T, <i>Frontiers in cell and developmental biology</i>. (89.4% CELLULAR/SUBCELLULAR; 2.0% MUSCLE)<br />
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<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42075204" target="_blank">The Potential Role of Tumor Microorganisms in Remodeling Tumor Biomechanical Signals and Application Strategies in Tumor Therapy.</a></b> Li X, Chang J, Xia Q, Yan J, Zhang H, Yang H, <i>Microorganisms</i>. (95.7% CELLULAR/SUBCELLULAR; 3.1% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42089315" target="_blank">The Interplay of Airway Epithelium and Biomechanical Stress in Pulmonary Fibrosis.</a></b> Lin L, Khoury J, Zhang G, Szafron J, Manning EP, Ahangari F, <i>American journal of respiratory cell and molecular biology</i>. (56.3% CELLULAR/SUBCELLULAR; 24.4% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42064024" target="_blank">3D environment favors persistent changes in cell functions and altered morphology, wrinkling, and biomechanical signature of the nucleus.</a></b> Gonz&amp;aacute;lez-Novo R, Zamora-Carreras H, Armesto M, de Lope-Planelles A, L&amp;oacute;pez-Men&amp;eacute;ndez H, Roda-Navarro P, Monroy F, Wang L, Toseland CP, Redondo-Mu&amp;ntilde;oz J, <i>Cell reports. Physical science</i>. (98.0% CELLULAR/SUBCELLULAR; 1.3% 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/42096173" target="_blank">Exploratory Characterization of Adaptive Eye Strategies to High-Acceleration Loading in the Great Spotted Woodpecker.</a></b> Li J, Li Q, Zhou X, Elsheikh A, Wang Y, Zhang J, Wang L, Fan Y, <i>Annals of biomedical engineering</i>. (41.1% COMPARATIVE; 22.8% VISUAL/VESTIBULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42068023" target="_blank">Scratching beneath the surface: Quantification of muscle architecture and myosin heavy chain content in the forelimbs of black-tailed prairie dogs (Cynomys, Rodentia).</a></b> Scheetz LA, Burnett CA, Kimble BR, Eads DA, Butcher MT, <i>Journal of anatomy</i>. (87.0% COMPARATIVE; 4.6% EVOLUTION/ANTHROPOLOGY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42065823" target="_blank">Alteration of the Microbiome is Associated with Changes in Mating and Locomotion in Callosobruchus Maculatus.</a></b> Esteban DJ, Feeley M, Goud M, Abban-Demitrus AM, Mishalani L, Touchon J, Czesak ME, <i>Microbial ecology</i>. (79.7% COMPARATIVE; 9.4% EVOLUTION/ANTHROPOLOGY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42065707" target="_blank">Clinging strength, but not sprint speed, underlies morphological divergence between ecologically distinct Liolaemus species.</a></b> Tulli MJ, Cruz F, Toyama KS, <i>Journal of evolutionary biology</i>. (60.7% COMPARATIVE; 36.7% EVOLUTION/ANTHROPOLOGY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42094339" target="_blank">Co-option of Lysosomal Machinery for Sponge Biosilicification.</a></b> Rangarajan-Paul M, Nichols SA, Tresguerres M, <i>bioRxiv : the preprint server for biology</i>. (47.4% COMPARATIVE; 31.1% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42090893" target="_blank">Fitness in novel environments: Bisphenol S and warming reduce energy efficiency, reproductive success, and movement across generations in zebrafish (Danio rerio).</a></b> Cotterill E, Jahn M, Seebacher F, <i>Aquatic toxicology (Amsterdam, Netherlands)</i>. (82.1% COMPARATIVE; 7.2% EVOLUTION/ANTHROPOLOGY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42064737" target="_blank">Enclosures with flexible structures stimulate species-typical locomotion, but not locomotion quantity, in zoo-housed Bornean orangutans (Pongo pygmaeus).</a></b> Geijtenbeek JW, van den Berg L, Roth T, <i>Animal welfare (South Mimms, England)</i>. (73.4% COMPARATIVE; 10.1% VETERINARY/AGRICULTURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42068762" target="_blank">Neurobehavioral and molecular responses of the endemic barbel Carasobarbus fritschii to pyriproxyfen, salinity, and thermal stress.</a></b> Ahnich A, Naimi M, Abboussi O, Aitboumallassa F, Adarak H, Khalki H, <i>Aquatic toxicology (Amsterdam, Netherlands)</i>. (63.8% COMPARATIVE; 17.4% EVOLUTION/ANTHROPOLOGY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42074257" target="_blank">Nutrient Deprivation in Artemia franciscana: Developmental Stage, Nutritional History, and Phenotypes Linked to Conserved Pathways.</a></b> Mitovic N, Stamatoski MM, Ilic D, Makki DY, Alsaadi H, Puflovic D, Milosevic M, Jovanovic M, Nale MM, Gostiljac D, <i>International journal of molecular sciences</i>. (80.8% COMPARATIVE; 4.9% CELLULAR/SUBCELLULAR)<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/42095636" target="_blank">Three-Dimensional Evaluation of Zygomaticomaxillary Complex Displacement and Rotational Centre in Adults Induced by Maxillary Skeletal Expander, Analysed With CBCT and Heuristic Search Algorithm.</a></b> Hu L, Chang N, Xie Z, Yang Z, Kang T, Lu H, Sun Y, Chen X, <i>Orthodontics &amp;amp; craniofacial research</i>. (97.9% DENTAL/ORAL/FACIAL; 0.5% ORTHOPAEDICS/SPINE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42092893" target="_blank">Microstructural characterization of enamel at different walls of Class II cavities.</a></b> Wang C, Xu J, Zhang L, Chen X, Li M, <i>BMC oral health</i>. (89.7% DENTAL/ORAL/FACIAL; 4.9% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42087478" target="_blank">Effects of Combined Transcranial Direct Current Stimulation and Oral Capsaicinoids on Swallowing Function: A Randomized Controlled Trial.</a></b> Cheng I, Suntrup-Kr&amp;uuml;ger S, <i>Journal of oral rehabilitation</i>. (88.7% DENTAL/ORAL/FACIAL; 2.7% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42080419" target="_blank">Investigating the maximum bite force and speech intelligibility in patients requiring prosthetic rehabilitation.</a></b> Gupta A, Patel N, Mante F, Lee JD, Chang MB, <i>Journal of prosthodontics : official journal of the American College of Prosthodontists</i>. (96.9% DENTAL/ORAL/FACIAL; 1.3% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42077143" target="_blank">How do zygomatic implant configurations and prosthetic framework materials influence the biomechanics of quad zygoma rehabilitation in severely atrophic maxilla?</a></b> Ger&amp;ccedil;ek ABK, Ger&amp;ccedil;ek AO, <i>Journal of prosthodontics : official journal of the American College of Prosthodontists</i>. (95.3% DENTAL/ORAL/FACIAL; 2.9% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42077131" target="_blank">Dens Invaginatus as a Biomechanical Risk Modifier in Dental Trauma: Finite Element Analysis.</a></b> Ayaz E&#350;, Ayd&#305;no&#287;lu S, G&amp;uuml;na&amp;ccedil;ar DN, Dizdar A, Yaylaci EU, Yaylaci M, Yerebakan M, <i>Dental traumatology : official publication of International Association for Dental Traumatology</i>. (98.5% DENTAL/ORAL/FACIAL; 0.3% TRAUMA/IMPACT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42082077" target="_blank">The face you're born with: How early development dictates a lifetime of expression and ageing.</a></b> Rahman E, Rao P, Saklayen G, Ahmed M, Philipp-Dormston WG, Wu WTL, Webb WR, <i>Cells &amp;amp; development</i>. (47.3% DENTAL/ORAL/FACIAL; 20.7% EVOLUTION/ANTHROPOLOGY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42068030" target="_blank">The Dahl Concept as a Conservative Approach for Anterior Tooth Wear: A Case Report.</a></b> Hawthan MA, <i>The American journal of case reports</i>. (99.0% DENTAL/ORAL/FACIAL; 0.2% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42085055" target="_blank">Biomechanical Evaluation of Implant Size and Osseointegration Using Three-dimensional Finite Element Analysis.</a></b> Kamble PS, Kalghatgi S, Karade P, Nair AS, Chatterjee A, Chopade RV, <i>The Nigerian postgraduate medical journal</i>. (44.4% DENTAL/ORAL/FACIAL; 32.3% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42063011" target="_blank">Finite element analysis of stress distribution after folded and single-layer fibular reconstruction with implant restoration for brown class &#8545; mandibular defects.</a></b> Yan M, Nie R, Ma Z, Song L, Wang T, Li J, <i>BMC oral health</i>. (98.1% DENTAL/ORAL/FACIAL; 0.3% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42062512" target="_blank">Pressure-based finite element analysis of setup distance in clear aligner canine retraction comparing bodily and tipping movements.</a></b> Kim K, Choi YK, Kim SH, Kim SS, Kim YI, <i>Scientific reports</i>. (94.3% DENTAL/ORAL/FACIAL; 1.6% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42083631" target="_blank">Pharmacological Modulation of Orthodontic Tooth Movement: Mechanisms, Clinical Implications, and Emerging Therapeutic Approaches. A Review.</a></b> Pacheco-Quito EM, Flores-Regalado C, Lima-Illescas M, Sarmiento-Ordo&amp;ntilde;ez J, Cuenca-Le&amp;oacute;n K, <i>Clinical, cosmetic and investigational dentistry</i>. (98.9% DENTAL/ORAL/FACIAL; 0.1% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42074913" target="_blank">Effects of Attachment Placement on Palatal Root Torque Control of Maxillary Incisors with Clear Aligners: A Finite Element Study.</a></b> Choi YK, Jeong SP, Kim SH, Kim SS, Kim YI, <i>Journal of clinical medicine</i>. (99.3% DENTAL/ORAL/FACIAL; 0.1% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42073772" target="_blank">Influence of Immediate Versus Delayed Loading on Peri-Implant Bone Healing: A Comparative FEA Study of Titanium Threaded and Scaffold Dental Implants.</a></b> Casalino G, Ceddia M, Contuzzi N, Lamberti L, Trentadue B, <i>Materials (Basel, Switzerland)</i>. (98.2% DENTAL/ORAL/FACIAL; 0.5% BONE)<br />
<br />
<br />
<span style="font-size:16px"><b>*ERGONOMICS*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42069669" target="_blank">Lateral armrest support improves postural alignment, respiratory mechanics, and shoulder girdle loading during seated eating in healthy young adults: a multidimensional biomechanical evaluation.</a></b> Tashiro D, Tou K, Okano I, Nishiguchi S, <i>Journal of neuroengineering and rehabilitation</i>. (57.9% ERGONOMICS; 32.7% POSTURE/BALANCE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42092251" target="_blank">Study on the relationship between occupational stress and social support with job burnout of locomotive drivers.</a></b> Liu GQ, Huang HL, Huang XR, Guo HF, Jia QC, Ma SW, <i>Zhonghua lao dong wei sheng zhi ye bing za zhi = Zhonghua laodong weisheng zhiyebing zazhi = Chinese journal of industrial hygiene and occupational diseases</i>. (99.6% ERGONOMICS; 0.1% REHABILITATION)<br />
<br />
<br />
<span style="font-size:16px"><b>*EVOLUTION/ANTHROPOLOGY*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42089347" target="_blank">A marine stem-myriapod from the Silurian Waukesha Lagerst&amp;auml;tte, Wisconsin, USA: terrestrial traits pre-date the transition to land.</a></b> Briggs DEG, Lamsdell JC, Kluessendorf J, Mikulic DG, <i>Proceedings. Biological sciences</i>. (58.8% EVOLUTION/ANTHROPOLOGY; 29.1% COMPARATIVE)<br />
<br />
<br />
<span style="font-size:16px"><b>*GAIT/LOCOMOTION*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42083323" target="_blank">Animal Models of Freezing of Gait.</a></b> Coletta S, Papa SM, <i>The European journal of neuroscience</i>. (58.0% GAIT/LOCOMOTION; 14.1% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42094305" target="_blank">Impact of overweight on spatiotemporal gait parameters and lower-limb biomechanics in functional ankle instability.</a></b> Huang D, Zhang C, Wang J, Ren H, Wu Z, Li L, Ke X, Lin Z, Jiang C, <i>Frontiers in physiology</i>. (92.3% GAIT/LOCOMOTION; 2.1% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42072213" target="_blank">Pilot Study of an Integrated Gait and Spine Kinematics Protocol Using Optoelectronic Motion Analysis in Scoliosis Patients: Validation, Usability, and Comparison with Healthy Controls.</a></b> Molteni LE, Piccinini L, Riboni R, Andreoni G, <i>Bioengineering (Basel, Switzerland)</i>. (63.6% GAIT/LOCOMOTION; 16.5% 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/42088698" target="_blank">Tricortical iliac crest wedge grafting with headless screw fixation for unstable scaphoid waist nonunion: Union rates and two-year functional outcomes.</a></b> Singh V, Gowda AKS, Mishra R, R H, C A, Regmi A, <i>Journal of clinical orthopaedics and trauma</i>. (79.1% HAND/FINGER/FOOT/TOE; 17.3% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42080902" target="_blank">Imaging findings of foot and ankle injuries in dancers.</a></b> Colucci PG, Gao MA, Davenport KL, Conti MS, Sofka CM, <i>Skeletal radiology</i>. (91.7% HAND/FINGER/FOOT/TOE; 2.7% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42069767" target="_blank">Impact of disease duration on forefoot involvement in rheumatoid arthritis remission: clinical, ultrasound, and radiographic insights.</a></b> Bueno Fermoso R, Mat&amp;eacute;-Mu&amp;ntilde;oz JL, Mart&amp;iacute;nez Rinc&amp;oacute;n C, L&amp;oacute;pez Gonz&amp;aacute;lez JM, S&amp;aacute;nchez-G&amp;oacute;mez R, Gonz&amp;aacute;lez Fern&amp;aacute;ndez ML, <i>BMC rheumatology</i>. (91.6% HAND/FINGER/FOOT/TOE; 4.3% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42067603" target="_blank">Tibial transverse transport promotes diabetic foot ulcer healing by regulating miR-182-5p.</a></b> Xie T, Li H, Sun Z, Li R, Huang W, <i>Scientific reports</i>. (80.0% HAND/FINGER/FOOT/TOE; 8.2% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42076814" target="_blank">3D-Printed Patient-Specific Guides Versus Conventional Techniques for Scaphoid Reconstruction: A Comparative Study of 89 Cases.</a></b> Mania S, Maniglio M, Wirth MA, Nagy L, Reissner L, Schweizer A, <i>Journal of orthopaedic research : official publication of the Orthopaedic Research Society</i>. (76.2% HAND/FINGER/FOOT/TOE; 21.4% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42065227" target="_blank">Dynamic wrist imaging using four-dimensional CT: current concepts, clinical applications, and future perspectives.</a></b> van der Heijden EPA, Terng T, Haenen M, Vries HS, Hummelink S, Teule EHS, <i>EFORT open reviews</i>. (90.3% HAND/FINGER/FOOT/TOE; 2.8% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42063039" target="_blank">Different screw configurations for treating Sanders type IIB intra-articular calcaneal fractures: a finite element analysis.</a></b> Wang XY, Xia WJ, Wang SY, Li RY, Chen EF, Tan GC, Zhou JS, Guo XS, Feng YZ, <i>BMC musculoskeletal disorders</i>. (58.3% HAND/FINGER/FOOT/TOE; 30.9% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42061124" target="_blank">Validity and reliability of arthrometer-based measures of the first ray relative and absolute mobility: A cadaveric biomechanical study.</a></b> Moissenet F, Chollet M, Praz Q, Schoinas S, Olivier J, Acker A, Bailez A, Assal M, Armand S, <i>Journal of biomechanics</i>. (95.4% HAND/FINGER/FOOT/TOE; 1.7% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42085948" target="_blank">Cadaveric analysis of plantar fascia strain and the development of a plantar fascia stretching device.</a></b> Momenzadeh K, Williamson PM, Williams C, Nazarian A, Miller CP, <i>Journal of biomechanics</i>. (93.8% HAND/FINGER/FOOT/TOE; 2.5% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42073088" target="_blank">Pediatric Pes Planovalgus and Femoral Antetorsion: Understanding a Biomechanical Unit: A Narrative Review of the Proximal-to-Distal Kinetic Chain in Childhood Flatfoot.</a></b> Camathias C, Valderrabano V, Rutz E, Speth BM, <i>Children (Basel, Switzerland)</i>. (83.2% HAND/FINGER/FOOT/TOE; 7.9% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42072183" target="_blank">Patient-Specific Finite Element Analysis of Tibialis Anterior Tendon Insertion Variability and Its Impact on First Ray Biomechanics.</a></b> Ta&#351;kin R, Kaymaz &#304;, Yazici O, Ugur F, <i>Bioengineering (Basel, Switzerland)</i>. (91.1% HAND/FINGER/FOOT/TOE; 2.7% MODELING)<br />
<br />
<br />
<span style="font-size:16px"><b>*JOINT/CARTILAGE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42092303" target="_blank">Bibliometric Analysis of Charcot Arthropathy (1995-2025): Current Status and Emerging Trends.</a></b> Zhou JL, Peng H, Sun F, <i>Journal of foot and ankle research</i>. (62.2% JOINT/CARTILAGE; 7.0% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42064790" target="_blank">Arthroscopic repair of meniscal root tears: Current evidence and future directions.</a></b> Pydi SSD, Gopavaram UKR, Kotteda AK, <i>Journal of clinical orthopaedics and trauma</i>. (42.8% JOINT/CARTILAGE; 39.7% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42089189" target="_blank">Reinforced Bacterial Cellulose/GelMA-HAMA Bionic Cartilage Hydrogel with Spatiotemporal Delivery of Exosomes and BMSCs for Temporomandibular Joint Disc Regeneration.</a></b> Lu J, Fan W, Wang X, Gao W, Jiang M, Yang W, Cai K, Xu J, <i>Advanced healthcare materials</i>. (78.4% JOINT/CARTILAGE; 18.0% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42090889" target="_blank">Anterior tibial translation in pediatric ACL-deficient knees under functional orthosis loading: a finite element study.</a></b> Mallinos A, Sharghi S, Jones K, <i>The Knee</i>. (29.0% JOINT/CARTILAGE; 20.9% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42080576" target="_blank">Editorial Commentary: Hip Capsular Healing Is Dynamic-What Axial Traction Reveals After Periportal Repair.</a></b> Maldonado DR, <i>Arthroscopy : the journal of arthroscopic &amp;amp; related surgery : official publication of the Arthroscopy Association of North America and the International Arthroscopy Association</i>. (53.5% JOINT/CARTILAGE; 31.1% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42079386" target="_blank">Experimental computational validation of load redistribution after partial meniscectomy and meniscal repair.</a></b> Rivarola H, Helito C, Collazo C, Pe&amp;ntilde;aherrera-Carrillo C, Barros Castro A, Endara Urresta F, <i>Journal of clinical orthopaedics and trauma</i>. (73.1% JOINT/CARTILAGE; 6.6% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42061769" target="_blank">Preservation of the Constitutional Coronal Plane Alignment of the Knee Phenotype in Varus and Neutral Knees Is Associated With Improved Early Functional Recovery: A Prospective In-Office Gait-Analysis.</a></b> Burgio C, Zepeda K, Vachhani S, Yared T, Gonzalez FQ, Mayman D, Jerabek S, Sculco PK, Vigdorchik JM, Debbi EM, <i>The Journal of arthroplasty</i>. (46.8% JOINT/CARTILAGE; 14.9% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42087502" target="_blank">Advances and development trends in non-surgical treatment of knee osteoarthritis.</a></b> He R, <i>Zhongguo gu shang = China journal of orthopaedics and traumatology</i>. (87.7% JOINT/CARTILAGE; 4.3% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42077513" target="_blank">Ankle Arthrodesis Associated With Risk of Progression to Total Knee Arthroplasty Compared to Total Ankle Arthroplasty.</a></b> Coden G, Wood C, Brzezinski A, Beckles M, Gray S, Smith R, Hofmann K, <i>Foot &amp;amp; ankle orthopaedics</i>. (63.0% JOINT/CARTILAGE; 19.1% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42083348" target="_blank">The Interplay between Osteoarthritis and the Microbiome-joint Axis: A Systemic Perspective on Novel Therapeutic Targets.</a></b> Valentini M, Valentini GM, Akkawi I, Zeppa SD, Bartolacci A, Pegreffi F, Zmerly H, <i>Current rheumatology reviews</i>. (96.9% JOINT/CARTILAGE; 0.7% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42072411" target="_blank">Effect of Knee Joint Meniscus Tears on Joint Cartilage Contact and Pressure with Finite Element Analysis.</a></b> Kurt C, G&amp;ouml;k A, <i>Biomedicines</i>. (93.7% JOINT/CARTILAGE; 2.4% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42075592" target="_blank">Mechanical Signatures of Tibiofemoral Cartilage Degeneration Identified by Unconfined Compression Testing: Implications for Early Osteoarthritis Risk in Athletes.</a></b> Benhmida S, Dergaa I, Ceylan H&#304;, Bragazzi NL, de Giorgio A, Boussi H, Trabelsi H, <i>Medicina (Kaunas, Lithuania)</i>. (97.5% JOINT/CARTILAGE; 0.9% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42078296" target="_blank">Discoid Meniscus in Children: Why Meniscal Preservation and Repair Should Be the Goal in Modern Pediatric Knee Surgery.</a></b> Gonzalez Almonacid J, <i>Cureus</i>. (61.6% JOINT/CARTILAGE; 22.7% 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/42092865" target="_blank">Accurate estimation of hip range of motion using MediaPipe and inertial sensors with machine learning models.</a></b> Maeda T, Kamenaga T, Inui A, Kitamura T, Kuroda Y, Tsubosaka M, Nakano N, Hayashi S, Matsumoto T, Kuroda R, <i>BMC musculoskeletal disorders</i>. (93.5% METHODS; 3.7% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42092175" target="_blank">Optimized sensor-embedded loose garment for accurate motion detection.</a></b> Elgendi M, Raczy&#324;ski T, Shokurov A, Janczak D, Jakubowska M, Menon C, <i>Communications engineering</i>. (96.9% METHODS; 0.5% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42091916" target="_blank">A dataset of paired smartphone and BioPlux accelerometer measurements for vertical jump analysis.</a></b> Radid Y, Garcia NM, Al-Jumaili S, Branco F, Coelho PJ, Pires IM, <i>Scientific data</i>. (83.2% METHODS; 13.1% SPORT/EXERCISE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42089125" target="_blank">A Biomimetic Palpation Platform for the Quantitative and Non-Invasive Assessment of Tissue Compliance.</a></b> Kim J, Lee YJ, Cho MO, Seo S, Chun KY, Han CS, <i>Advanced healthcare materials</i>. (81.8% METHODS; 13.7% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42080890" target="_blank">HumanMoveNet: a dynamic 3D spine reconstruction framework for low back pain screening and rehabilitation assessment.</a></b> Huang T, Xia Z, Cheung JPY, Hai Y, Kuang X, Zhang T, <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>. (50.7% METHODS; 15.8% ORTHOPAEDICS/SPINE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42080513" target="_blank">High-Performance V2O5/Chitosan Composite Film-Based Triboelectric Nanogenerator for Mechanical Energy Harvesting and Smart Safety Wearable Applications.</a></b> Vadlakonda R, Kurakula A, Park HM, Kavarthapu VS, Gatla G, Yu JS, <i>ACS applied materials &amp;amp; interfaces</i>. (76.1% METHODS; 6.6% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42083376" target="_blank">CSGM: A R Package to Conduct a Robust Cross-Sectional Geometric Morphometric Analysis.</a></b> Keeling BA, Urciuoli A, Conde-Valverde M, Diez-Valero J, Spake L, Quam R, <i>American journal of biological anthropology</i>. (54.9% METHODS; 28.8% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42067632" target="_blank">A biomechanical-constrained temporal learning framework for lightweight skeleton-based exercise recognition.</a></b> Al-Otaibi S, Saleem AA, Khan AR, Jamjoom MM, Siddiqui HUR, Yousif A, Ayesha N, <i>Scientific reports</i>. (92.0% METHODS; 2.2% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42085950" target="_blank">Lights, Cameras, Action - The influence of lighting and camera position on walking and running kinematic measurements using Theia3D markerless motion capture.</a></b> Thomas A, Tucker CB, Lunn DE, Cooke MJ, Nicholson G, Walker J, <i>Journal of biomechanics</i>. (70.3% METHODS; 21.9% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42085951" target="_blank">Effect of markers in training dataset for markerless applications in biomechanics.</a></b> Mercier L, Cresson T, Mezghani N, Gervais S, V&amp;aacute;zquez C, <i>Journal of biomechanics</i>. (97.3% METHODS; 1.2% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42078874" target="_blank">A Computational Pipeline for Activity PredictionUsing Wearable Sensor Data.</a></b> Chuah J, Vancells-Lopez L, Loya AK, Bandara D, Drazan JF, <i>Research square</i>. (91.3% METHODS; 3.6% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42073810" target="_blank">Recent Advances in Triboelectric Nanogenerators for Biomedical and Cardiovascular Monitoring.</a></b> Sarode A, Rajendran J, Slaughter G, <i>Materials (Basel, Switzerland)</i>. (67.4% METHODS; 27.7% CARDIOVASCULAR/CARDIOPULMONARY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42076611" target="_blank">The Use of Machine Learning to Estimate Ground Reaction Forces During Running: A Scoping Review of the Current Practices.</a></b> Oliveira AS, Yaserifar M, P&amp;icirc;r&#537;coveanu CI, <i>Sensors (Basel, Switzerland)</i>. (56.3% METHODS; 26.9% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42076609" target="_blank">Sagittal-Plane Knee Flexion Moment Estimation Using a Lightweight Deep Learning Framework Based on Sequential Surface EMG Feature Frames.</a></b> Zhuo Y, Pranata A, Cheng CT, Pang TY, <i>Sensors (Basel, Switzerland)</i>. (83.2% METHODS; 8.2% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42072268" target="_blank">Efficient and Dynamically Consistent Joint Torque Estimation for Wearable Neurotechnology via Knowledge Distillation.</a></b> Xu S, Chang Z, Ding Z, Yang X, Wang T, Xu D, <i>Bioengineering (Basel, Switzerland)</i>. (90.7% METHODS; 2.6% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42074830" target="_blank">Practical Use of Wearable Activity Measurement Devices in Orthopaedic Surgery: A Qualitative Analysis of Multidisciplinary Expert Experience.</a></b> Hazem D, Grellinger ED, Youn A, Yarboro S, Richter P, Sivananthan S, Grimm B, Hanflik A, Wearq Group, Braun B, Marmor M, <i>Journal of clinical medicine</i>. (49.3% METHODS; 22.6% ERGONOMICS)<br />
<br />
<br />
<span style="font-size:16px"><b>*MODELING*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42063455" target="_blank">Biomechanical study using the finite element analysis of a new method for fixation of coronal fracture of the femoral condyle.</a></b> Mendon&amp;ccedil;a CJA, Olesczuk G, Antunes MF, Ferreira APCDS, Berti LF, Belo IM, Soni JF, Schneider B, <i>Journal of orthopaedics</i>. (36.4% MODELING; 35.6% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42093077" target="_blank">Finite Element Analysis of Upper Airway in Ansa Cervicalis Stimulation for Obstructive Sleep Apnea.</a></b> Gupta M, Li S, Luo H, Kent DT, Li Y, <i>The Laryngoscope</i>. (82.7% MODELING; 9.5% DENTAL/ORAL/FACIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42087279" target="_blank">Biomechanical effects of intra-abdominal pressure and genital hiatus on the pelvic floor in initial injury.</a></b> Zheng Q, Li L, Gao Z, Shen J, Yao T, <i>Proceedings of the Institution of Mechanical Engineers. Part H, Journal of engineering in medicine</i>. (82.2% MODELING; 6.0% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42070135" target="_blank">A workflow for the creation of specimen-specific finite element models based on open-source software - a feasibility study.</a></b> Kanso AL, Verd&amp;eacute;rio J&amp;uacute;nior SA, Capello Sousa EA, Gheduzzi S, Gill HS, Agostinho Hernandez B, <i>Computer methods in biomechanics and biomedical engineering</i>. (91.8% MODELING; 4.4% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42069291" target="_blank">Quantum-logical modeling of bioinformatics of inheritance of algorithmic biostructures based on unitary operators and their cyclic groups.</a></b> Petoukhov SV, <i>Bio Systems</i>. (90.6% MODELING; 2.6% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42066381" target="_blank">In silico modeling of transcatheter heart valve oversizing and ellipticity, Part I: Establishing credibility of an advanced model.</a></b> Boxwell S, Armfield D, Cahalane RME, Hickey W, Cook S, Kelly P, Cardiff P, McNamara LM, <i>Computer methods and programs in biomedicine</i>. (59.2% MODELING; 36.2% CARDIOVASCULAR/CARDIOPULMONARY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42061123" target="_blank">A computational musculoskeletal model for ACL injury risk analysis: Development and validation.</a></b> Gong Z, Li G, Han Y, Li L, Zhang M, Ao D, <i>Journal of biomechanics</i>. (72.8% MODELING; 20.3% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42072239" target="_blank">A Rigid-Body Pendulum Model for Plyometric Push-Up Biomechanics: Analytical Derivation and Numerical Quantification of Flight Time, Arc Displacement, Maximum Height, and Mechanical Power Output.</a></b> Dhahbi W, <i>Bioengineering (Basel, Switzerland)</i>. (69.8% MODELING; 13.8% POSTURE/BALANCE)<br />
<br />
<br />
<span style="font-size:16px"><b>*MUSCLE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42093049" target="_blank">Reduced hypopharyngeal muscle strength in patients with dysphagia symptoms after anterior cervical discectomy and fusion.</a></b> Lai CJ, Tsuang FY, Jhuang JR, Hsiao MY, Cheng YJ, Chang YC, Chen JY, <i>Perioperative medicine (London, England)</i>. (63.0% MUSCLE; 11.6% ORTHOPAEDICS/SPINE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42086888" target="_blank">Pro-myogenic and anti-atrophic effects of Padina arborescens extract through Akt/mTOR signaling in dexamethasone-induced C2C12 cells and zebrafish model.</a></b> Lee KM, Kim WC, Lee YS, Park JW, Yun B, Lee W, Choi KM, Im ST, Lee SH, <i>In vitro cellular &amp;amp; developmental biology. Animal</i>. (98.9% MUSCLE; 0.2% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42094282" target="_blank">Application of digital image correlation to study the activity and functional heterogeneity of the human temporalis muscle in vivo during unilateral chewing: a preliminary study.</a></b> Str&amp;oacute;&#380;yk P, <i>Frontiers in bioengineering and biotechnology</i>. (89.2% MUSCLE; 7.8% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42078436" target="_blank">The myodural bridge complex: a comprehensive review of morphology, physiology, developmental biology and pathology.</a></b> Zhang L, Song X, Chen C, Ma W, Zhang JF, Zheng N, Sui HJ, <i>Frontiers in medicine</i>. (94.0% MUSCLE; 1.8% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42074737" target="_blank">Biomechanical and Viscoelastic Properties of the Ankle Muscles in Relation to Muscle Force in Patients with Operated Tibial Pilon Fractures.</a></b> Bolovan AD, Onofrei RR, Hogea GB, Abu-Awwad A, Patrascu JM, Tapardea AR, Crisan AF, Amaricai EC, <i>Journal of clinical medicine</i>. (71.4% MUSCLE; 7.9% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42077737" target="_blank">The Association Between Hamstring Tightness and Chronic Low Back Pain: A Comparative Study.</a></b> Hegde A, Sareen A, Shankar R, Das J, Gowda N, Shetty P, Sengupta A, Chopra RK, <i>Cureus</i>. (85.2% MUSCLE; 6.8% ERGONOMICS)<br />
<br />
<br />
<span style="font-size:16px"><b>*NEURAL*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42085827" target="_blank">Parental exposure to plasticizers in treated sewage effluent induces life stage-dependent neurotoxicity in zebrafish F1 offspring.</a></b> Na&amp;iuml;ja A, Mohamed O, Abiib S, Al Khatib H, Hassan AE, Litrenta F, Puntorieri D, <i>Chemosphere</i>. (25.9% NEURAL; 16.8% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42069902" target="_blank">Low-intensity pulsed ultrasound promotes peripheral nerve regeneration by alleviating Schwann cells pyroptosis.</a></b> Chen J, Yu L, Lu Y, Zhang Y, Cheng CK, Yao Y, <i>Communications biology</i>. (87.4% NEURAL; 3.4% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42061063" target="_blank">Persisting primitive reflexes and motor and cognitive development in children: A systematic review.</a></b> Provazn&amp;iacute;k A, Mus&amp;aacute;lek M, Bob P, V&#283;trovsk&amp;yacute; T, Malambo C, Silva AF, Anderson D, <i>Acta psychologica</i>. (48.1% NEURAL; 17.0% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42064348" target="_blank">Nerve transfers for the upper extremity function restoration.</a></b> Rasuli&#263; L, Savi&#263; A, Lepi&#263; M, <i>Brain &amp;amp; spine</i>. (68.0% NEURAL; 10.9% ERGONOMICS)<br />
<br />
<br />
<span style="font-size:16px"><b>*ORTHOPAEDICS (SPINE)*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42080821" target="_blank">Efficacy and Safety of the Use of Interspinous Spacers in the Treatment of Lumbar Spinal Stenosis: Mapping Gap and Scoping Review.</a></b> Acevedo-Gonzalez JC, Velasco-Mu&amp;ntilde;oz V, Ramirez-Triana JJ, Buitrago-Lopez DA, <i>Pain practice : the official journal of World Institute of Pain</i>. (98.0% ORTHOPAEDICS/SPINE; 0.6% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42063568" target="_blank">Endoscopic-assisted anterior transarticular screw fixation and arthrodesis for atlantoaxial instability via a retropharyngeal approach: technical note and preliminary clinical outcomes.</a></b> Liao S, Qin Z, Moro A, Zeng F, Yang J, <i>North American Spine Society journal</i>. (91.1% ORTHOPAEDICS/SPINE; 7.4% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42095642" target="_blank">Impact-Based Analysis Method (IBAM) to evaluate the primary stability of the pedicle screw: A proof of concept.</a></b> Gabriel J, Petit Y, Rosi G, Wagnac &amp;Eacute;, Dagher M, Dubory A, Flouzat-Lachaniette CH, Ha&amp;iuml;at G, <i>Proceedings of the Institution of Mechanical Engineers. Part H, Journal of engineering in medicine</i>. (44.9% ORTHOPAEDICS/SPINE; 23.3% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42090070" target="_blank">Spinal energy balance can predict post-operative spine alignment in Lenke 1 Adolescent Idiopathic Scoliosis.</a></b> Langlais T, de Gauzy JS, Rassi J, Bony M, Brun-Cottan B, Eon A, Accadbled F, Swider P, Assemat P, <i>Spine deformity</i>. (96.9% ORTHOPAEDICS/SPINE; 1.5% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42086233" target="_blank">In vivo 3D kinematic analysis of cervical facet joints under physiological loading in healthy individuals.</a></b> Zhong Y, Peng Z, Zhang Z, Chen M, Yang J, Zhang Z, Chen S, Xiao K, Li G, Yu Y, Wan Z, <i>Bone &amp;amp; joint research</i>. (96.6% ORTHOPAEDICS/SPINE; 0.5% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42086902" target="_blank">The transformative role of SBRT in the management of spinal metastases.</a></b> Zeng KL, Maralani PJ, Hardisty M, Chen H, Detsky J, Dinakaran D, Soliman H, Tseng CL, Larouche J, Badhiwala J, David E, Jerzak KJ, Singnurkar A, Heyn C, Whyne C, Ruschin M, Sahgal A, <i>Nature reviews. Clinical oncology</i>. (81.1% ORTHOPAEDICS/SPINE; 6.6% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42086794" target="_blank">Minor endplate damage as an initiator of systemic biomechanical disruption of the lumbar disc: a finite element analysis of the 'mechanical tipping point' in disc failure.</a></b> Rajasekaran S, Jebaseelan D, Gurusamy G, Devaraj KB, Harinathan B, Yoganandan N, <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>. (90.2% ORTHOPAEDICS/SPINE; 7.6% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42065788" target="_blank">Interrelationships among 3D spinal alignment variables during active self-correction in adolescents with idiopathic scoliosis.</a></b> &#379;urawski A, Ha SY, <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>. (96.5% ORTHOPAEDICS/SPINE; 1.3% POSTURE/BALANCE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42066900" target="_blank">Impact of Multiple Operative Levels on Radiographic Subsidence in Stand-Alone Lateral Lumbar Interbody Fusion.</a></b> Don N, Wakelin SH, Spears Z, Zeeshan Q, McCarthy DJ, Legarreta AD, Deng H, Schulien A, Miele VJ, Hamilton DK, Agarwal N, Hudson JS, <i>World neurosurgery</i>. (96.9% ORTHOPAEDICS/SPINE; 2.5% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42061146" target="_blank">Defining mechanical dose before closing the loop: Comment on &quot;Mechanomedicine in anastomosis: Bridging biomechanics and clinical outcomes for improved surgical healing&quot; by Nianyuan Shi, et al.</a></b> Wen T, Lu TJ, <i>Physics of life reviews</i>. (75.2% ORTHOPAEDICS/SPINE; 12.8% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42072275" target="_blank">Recent Findings and Developments in Spine Biomechanics.</a></b> Liebsch C, <i>Bioengineering (Basel, Switzerland)</i>. (92.8% ORTHOPAEDICS/SPINE; 2.3% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42087919" target="_blank">Arthroscopic-assisted uni-portal spine surgery via modified interlaminar approach combined with annular suturing for L5/S1 disc herniation: a case report and technical note.</a></b> Chen Z, Yang W, Liu J, Zhao Z, Zhou N, Pu G, Song E, <i>Frontiers in surgery</i>. (96.7% ORTHOPAEDICS/SPINE; 2.0% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42066267" target="_blank">Superior Cluneal Nerve Entrapment: An Overlooked Cause of Low Back Pain and the Role of Nerve Blocks.</a></b> Reyes A, Saini C, Shi W, Wu H, <i>Pain medicine case reports</i>. (54.1% ORTHOPAEDICS/SPINE; 20.3% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42072169" target="_blank">Evaluation of a Novel Flexible Cage System for C5-C6 Fixation: A Finite Element Study Against Conventional ACDF Implants.</a></b> Woo S, Koo WM, Park K, Hwang JM, Kang S, <i>Bioengineering (Basel, Switzerland)</i>. (98.0% ORTHOPAEDICS/SPINE; 0.6% 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/42094734" target="_blank">Biomechanical evaluation of acromion and scapular spine fracture repair techniques systematic review.</a></b> Moore JW, Northrop MA, Guareschi ME, Rogalski BL, Friedman RJ, Eichinger JK, <i>JSES reviews, reports, and techniques</i>. (89.2% ORTHOPAEDICS/SURGERY; 3.3% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42095139" target="_blank">Short-term clinical and radiological outcome of the uncemented isoelastic monoblock Affinis Glenoid vitamys in stemless anatomic total shoulder arthroplasty: a multicenter study.</a></b> Halm-Pozniak A, Kasten P, K&amp;auml;&amp;auml;b MJ, Greis M, Gros S, Berth A, <i>JSES international</i>. (83.3% ORTHOPAEDICS/SURGERY; 9.1% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42094721" target="_blank">Distal tibial metaphyseal malunion: current concepts.</a></b> Panchbhavi M, Lantieri M, Aiyer A, <i>Journal of clinical orthopaedics and trauma</i>. (67.9% ORTHOPAEDICS/SURGERY; 15.3% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42064787" target="_blank">Distal femoral malunion: Biomechanical drivers, fixation strategies and the role of fixator assisted correction.</a></b> D'souza JJ, Peterson N, <i>Journal of clinical orthopaedics and trauma</i>. (78.8% ORTHOPAEDICS/SURGERY; 10.0% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42096049" target="_blank">Subject: submission of manuscript entitled &quot;integrating eTEP ventral hernia repair into bariatric surgery: technical insights and clinical outcomes from an institutional experience&quot;.</a></b> Christopher PJ, S SK, Manchala A, Xl JL, S P, Palanivelu PR, Chinnusamy P, <i>Hernia : the journal of hernias and abdominal wall surgery</i>. (55.8% ORTHOPAEDICS/SURGERY; 15.2% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42091113" target="_blank">Patellar thickness can critically impact knee joint biomechanics after total knee arthroplasty.</a></b> Guo N, Maas A, Grupp TM, Sch&amp;uuml;tz P, Windhagen H, Taylor WR, Hosseini Nasab SH, <i>Bone &amp;amp; joint research</i>. (46.0% JOINT/CARTILAGE; 41.4% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42090563" target="_blank">Fatal Complications Associated With Rib Remodeling: A Multinational Patient-safety Case Series.</a></b> Perez Pachon ME, Cuenca Pardo J, Lira M, Cantero LA, O&amp;ntilde;ate C, O&amp;ntilde;ate D, Dominguez-Millan R, Avellaneda M, C&amp;aacute;rdenas-Camarena L, Hoyos AE, <i>Aesthetic surgery journal</i>. (76.7% ORTHOPAEDICS/SURGERY; 12.4% ORTHOPAEDICS/SPINE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42087221" target="_blank">Does dual-plating offer superior stability in complex distal femoral fracture management?</a></b> Elbarbary AN, Badr IT, Badawy E, Saleh RYK, <i>Journal of orthopaedic surgery and research</i>. (91.0% ORTHOPAEDICS/SURGERY; 3.8% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42086657" target="_blank">Developmental dysplasia of the hip alters fracture patterns in femoral neck fractures.</a></b> Nishida Y, Ogawa Y, Shimizu T, Shimodan S, Ishizu H, Iwasaki N, <i>Scientific reports</i>. (67.8% ORTHOPAEDICS/SURGERY; 16.2% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42081062" target="_blank">Outcomes of surgical fixation of osteochondral fracture: a systematic review.</a></b> Pang AS, Oviya R, Tan JJ, Lim KSA, Hui JHP, Tan SHS, <i>Journal of orthopaedics and traumatology : official journal of the Italian Society of Orthopaedics and Traumatology</i>. (47.6% JOINT/CARTILAGE; 42.4% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42080315" target="_blank">Editorial Commentary: Is Standard Repair Enough for Posterior Medial Meniscus Root Tears? Early Promise of Meniscus Centralization.</a></b> Entessari M, Reynolds AW, <i>Arthroscopy : the journal of arthroscopic &amp;amp; related surgery : official publication of the Arthroscopy Association of North America and the International Arthroscopy Association</i>. (43.2% ORTHOPAEDICS/SURGERY; 40.7% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42069974" target="_blank">Assessing PHILOS plate as an alternative fixation method for pediatric femoral neck fractures: a biomechanical comparison with cannulated screws.</a></b> Lim BS, Wang YP, Chung ST, Wang CH, Chang SW, Wang TM, Hong CK, <i>Archives of orthopaedic and trauma surgery</i>. (85.1% ORTHOPAEDICS/SURGERY; 4.0% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42065657" target="_blank">Endoscopic combined intrarenal surgery: From percutaneous nephrolithotomy to the future of stone management.</a></b> Kang DH, Jeong JY, Moon YJ, Jung HD, Kim L, Lee JY, <i>Investigative and clinical urology</i>. (61.0% ORTHOPAEDICS/SURGERY; 4.7% ORTHOPAEDICS/SPINE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42065384" target="_blank">Septal Redirection Concept: Posterior Anchor-Anterior Rotation (PAAR) Technique for the Correction of Twisted Noses.</a></b> Akiner U, <i>The Journal of craniofacial surgery</i>. (52.9% ORTHOPAEDICS/SURGERY; 11.0% DENTAL/ORAL/FACIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42065226" target="_blank">'THA for DDH: replacement principles and techniques - femoral side'.</a></b> Konstantinidis K, Grammatikopoulos D, Kenanidis E, Maslaris A, Dantas P, Tsiridis E, <i>EFORT open reviews</i>. (79.0% ORTHOPAEDICS/SURGERY; 10.1% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42063492" target="_blank">Prior cervical spine fusion impairs early clinical outcomes following total shoulder arthroplasty and may be associated with increased fusion burden: a matched cohort analysis.</a></b> Alawa J, Althoff AD, Thacher RR, Finocchiaro A, Cheng R, Uzzo R, Cirino CM, Dines DM, Fu MC, Gulotta LV, Lovecchio FC, Ode GE, Taylor SA, Brusalis CM, <i>JSES international</i>. (55.2% ORTHOPAEDICS/SURGERY; 37.0% ORTHOPAEDICS/SPINE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42063488" target="_blank">Teres minor circle and subscapularis lengthening patterns during forward elevation in lateralized reverse total shoulder arthroplasty.</a></b> Lante E, Blakeney WG, Bauer S, <i>JSES international</i>. (83.1% ORTHOPAEDICS/SURGERY; 6.6% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42077329" target="_blank">Advances in Arthroscopic Superior Capsular Reconstruction of the Shoulder: A Narrative Review.</a></b> Xiong T, Zhang Z, Li Y, Wu Z, Zhao L, <i>Orthopedic reviews</i>. (67.9% ORTHOPAEDICS/SURGERY; 23.3% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42069020" target="_blank">Postmortem Analysis of Osseointegration in Cementless Acetabular Components After Total Hip Arthroplasty: A Multimodal Study.</a></b> Saba BV, Schaffler B, Martins de Souza B, Schaffer O, Fallah C, Alhaddad N, Montague M, Fritz J, Hopper R, Engh CA, Witek L, Schwarzkopf R, <i>The Journal of arthroplasty</i>. (69.1% ORTHOPAEDICS/SURGERY; 12.0% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42069014" target="_blank">Who Fails? Identifying Risks for Aseptic Loosening After Cementless Total Knee Arthroplasty.</a></b> Fuller Z, Singh M, Dawar A, Chundi G, Thomas J, Urias J, Daniels AH, Preston J, <i>The Journal of arthroplasty</i>. (53.0% ORTHOPAEDICS/SURGERY; 26.0% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42063061" target="_blank">Biomechanical efficacy of a medial buttress plate in the management of concomitant ipsilateral subcapital and intertrochanteric femoral fractures: a finite element analysis.</a></b> He R, Ying L, Yin N, Huang P, Ding L, <i>BMC musculoskeletal disorders</i>. (70.6% ORTHOPAEDICS/SURGERY; 8.5% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42074787" target="_blank">A Subscapularis-Sparing Modification of the Deltopectoral Approach for Facilitated Glenoid Exposure in Reverse Shoulder Arthroplasty: A Technical Note.</a></b> Ichiseki T, Ueda S, Soma D, Yasumoto K, Kaneuji A, Kawahara N, <i>Journal of clinical medicine</i>. (90.6% ORTHOPAEDICS/SURGERY; 3.9% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42072254" target="_blank">In Vitro Experimental Study of Biofiligree&amp;reg; Osteosynthesis in Calcaneus Fracture Fixation.</a></b> Ramos A, Noronha O, Sim&amp;otilde;es O, Noronha J, Sim&amp;otilde;es J, <i>Bioengineering (Basel, Switzerland)</i>. (66.7% ORTHOPAEDICS/SURGERY; 11.5% HAND/FINGER/FOOT/TOE)<br />
<br />
<br />
<span style="font-size:16px"><b>*POSTURE/BALANCE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42088665" target="_blank">Physical Therapy Intervention With Hippotherapy (HPOT) Affects Balance Control in the Elderly: A Randomized Controlled Trial.</a></b> Gholami BB, Fatahi A, Boroushak N, Molavian R, <i>Health science reports</i>. (71.2% POSTURE/BALANCE; 24.0% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42076598" target="_blank">Safe Fall: Use of Predictive Modeling and Machine Vision Techniques for Fall Analysis and Fall Quality.</a></b> DelCastillo-Andr&amp;eacute;s O, Fern&amp;aacute;ndez-Garc&amp;iacute;a R, Pastor-Vicedo JC, Lira MA, Campos-Mesa MC, Casta&amp;ntilde;eda-V&amp;aacute;zquez C, Genovesi E, Krstulovi&#263; S, Kuva&#269;i&#263; G, Morvay-Sey K, S&amp;aacute;nchez-Reolid R, <i>Sensors (Basel, Switzerland)</i>. (54.2% POSTURE/BALANCE; 13.7% SPORT/EXERCISE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42075650" target="_blank">The Relationship Between Body Posture and Psychophysical Functioning in Children with Obesity: A Narrative Literature Review and Future Research Perspective Related to Preliminary Research Concept.</a></b> Korzan K, Czepczor-Bernat K, Matusik P, Brz&#281;k A, <i>Medicina (Kaunas, Lithuania)</i>. (96.1% POSTURE/BALANCE; 1.1% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42075546" target="_blank">Association of Standing Sacral-Abdominal Wall Distance and Android/Gynoid Fat Distribution with Locomotive Syndrome in Older Women.</a></b> Nagai T, Tachikawa T, Hoshi E, Nishida Y, Nomura H, Sugiyama M, Kasai F, Kudo Y, Kawate N, <i>Medicina (Kaunas, Lithuania)</i>. (67.6% POSTURE/BALANCE; 8.5% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42073075" target="_blank">Knee Joint Loading During Supported Standing in Children and Adolescents with Severe Cerebral Palsy: Effects of Verticalization and Joint Position.</a></b> Althaus R, Steindl EM, <i>Children (Basel, Switzerland)</i>. (58.4% POSTURE/BALANCE; 18.2% REHABILITATION)<br />
<br />
<br />
<span style="font-size:16px"><b>*PROSTHETICS/ORTHOTICS*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42065133" target="_blank">The case study of prosthetic foot alignment on amputee gait kinematics using IMU-based motion capture system.</a></b> Korostovskaya D, Shashkina T, Eksharova S, Serdyukov V, <i>International biomechanics</i>. (98.6% PROSTHETICS/ORTHOTICS; 0.7% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42084610" target="_blank">Optimization of Active Backpack Loading Patterns to Improve the Walking Performance for Individuals With a Unilateral Transtibial Amputation.</a></b> Wetz MM, Klute GK, Neptune RR, <i>Journal of biomechanical engineering</i>. (69.9% PROSTHETICS/ORTHOTICS; 15.9% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42080501" target="_blank">The effects of ankle-foot orthoses on the gait of people with multiple sclerosis: a systematic review and meta-analysis.</a></b> Mosharaf M, Saberi S, Hillier S, Sadeghi-Demneh E, <i>Disability and rehabilitation</i>. (95.4% PROSTHETICS/ORTHOTICS; 3.1% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42074649" target="_blank">Awareness, Framework-Based Proficiency, and Clinical Implementation of Ankle Foot Orthosis-Footwear Combination (AFO-FC) Tuning: A Cross-Sectional Survey.</a></b> Alshawabka A, Qa'dan W, Alfatafta M, Atallah H, McGarry A, Molics B, <i>Journal of clinical medicine</i>. (97.9% PROSTHETICS/ORTHOTICS; 0.8% HAND/FINGER/FOOT/TOE)<br />
<br />
<br />
<span style="font-size:16px"><b>*REHABILITATION*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42089000" target="_blank">Mechanistic Explanations of Manual Therapy Do Not Influence Outcomes in Healthy Individuals: A Randomized Controlled Trial.</a></b> Waesch S, Leitner J, Stelzer LM, Adamczyk WM, Luedtke K, Szikszay TM, <i>Health science reports</i>. (69.3% REHABILITATION; 27.1% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42068432" target="_blank">Pain Unraveled: Kinesio Taping as a Novel Approach to Myofascial Pain Management.</a></b> Mittal P, Mittal S, <i>Current pain and headache reports</i>. (53.0% REHABILITATION; 28.8% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42067815" target="_blank">Effect of continued prenatal Pilates until childbirth on postpartum ligamentous recovery: a longitudinal follow-up of a randomized controlled trial.</a></b> Bulguroglu HI, Bulguroglu M, Degirmenci B, Suicmez S, Aslan CG, Develik SZ, Atalay Guzel N, <i>BMC pregnancy and childbirth</i>. (62.5% REHABILITATION; 18.5% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42063015" target="_blank">Effects of foot core training combined with hip and knee strengthening on patients with patellofemoral pain: a randomized controlled trial.</a></b> Xiao Y, Xiong Z, <i>BMC musculoskeletal disorders</i>. (77.0% REHABILITATION; 10.3% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42088707" target="_blank">Mediating Effect of Depression on Relationship Between Sleep Disturbance and Locomotive Syndrome in Geriatric Cancer Patients.</a></b> Chen Y, Wang HN, Chen Y, Liang XF, Xu HW, Wu RR, Dong LH, Su H, Yang YL, <i>Journal of multidisciplinary healthcare</i>. (33.9% REHABILITATION; 17.6% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42076656" target="_blank">Smart Sensor-Driven Gait Rehabilitation Walker Using Machine Learning for Predictive Home-Based Therapy.</a></b> Manavalan G, Arnon Y, Nithyaa AN, Arnon S, <i>Sensors (Basel, Switzerland)</i>. (73.5% REHABILITATION; 12.1% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42088759" target="_blank">Moving for relief: a meta-analysis on traditional Chinese exercise and nonspecific low back pain.</a></b> Jin Z, Zhang Q, Wang M, Zhai X, Xi J, Bai Y, Sang J, Ye H, Zhang X, <i>Frontiers in pain research (Lausanne, Switzerland)</i>. (54.5% REHABILITATION; 32.6% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42076536" target="_blank">Advances in Ultrasonic Rehabilitation.</a></b> Ostasevicius V, Jurenas V, Kizauskiene L, Paulauskaite-Taraseviciene A, Vezys J, Bubulis A, Nakrosis A, <i>Sensors (Basel, Switzerland)</i>. (41.8% REHABILITATION; 17.9% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42073098" target="_blank">Fundamental Motor Skills and Motor Competence in Children and Adolescents with Autism Spectrum Disorder (ASD): A Narrative Review.</a></b> Asonitou K, Kottara M, Charitou S, Koutsouki D, <i>Children (Basel, Switzerland)</i>. (53.1% REHABILITATION; 11.6% SPORT/EXERCISE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42073419" target="_blank">Is Exercise Enough? Evidence from Controlled Clinical Trials on Rehabilitation with and Without Adjunct Modalities for Musculoskeletal Disorders.</a></b> Rawat B, Rajpoot YS, Saha S, Ciocan VC, Cristuta AM, Choudhary S, Choudhary PK, Gorgan CM, Sufaru C, Voinea NL, <i>Life (Basel, Switzerland)</i>. (83.4% REHABILITATION; 14.4% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42072194" target="_blank">Relationship Between Quadriceps Muscle Strength Asymmetry and Lower Limb Biomechanical Asymmetry During Running in Patients Who Underwent Anterior Cruciate Ligament Reconstruction.</a></b> Ge X, Gao M, Tao Y, Suo L, Ren S, Ao Y, <i>Bioengineering (Basel, Switzerland)</i>. (31.5% REHABILITATION; 24.7% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42073030" target="_blank">Neurorehabilitation and Functional Improvement in Joubert Syndrome: A 12-Month Case Report.</a></b> Ma&#324;ski &#321;, Moluszys A, Wasilewska E, Rosa A, Szcza&#322;uba K, Szumlicki J, Szyma&#324;ska K, Wierzba J, <i>Children (Basel, Switzerland)</i>. (84.2% REHABILITATION; 14.1% ERGONOMICS)<br />
<br />
<br />
<span style="font-size:16px"><b>*ROBOTICS*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42088616" target="_blank">A General Kinematic Model for Multimodal Locomotion in Bioinspired Robots.</a></b> Hong Z, Fei J, Li W, Yan J, Yu J, Tian F, Zhong Y, <i>Research (Washington, D.C.)</i>. (82.7% ROBOTICS; 13.1% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42069686" target="_blank">Swimming with robots: investigating fish locomotion, sensing, and schooling behavior with robotic swimmers.</a></b> Ijspeert A, Mondada F, Standen E, Theraulaz G, <i>Nature communications</i>. (96.0% ROBOTICS; 1.4% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42069677" target="_blank">Omnidirectional motion of an untethered tripodal microrobot using radial piezoelectric actuators.</a></b> Gao Y, Li J, Zhang S, Yan J, Zhang Y, Liu B, Guan J, Wang D, Deng J, Liu Y, <i>Nature communications</i>. (99.5% ROBOTICS; 0.1% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42088711" target="_blank">A mechanical model for a system of coupled elastic filaments for terrestrial robot locomotion.</a></b> Konidala B, Spinello D, <i>Mathematics and mechanics of solids : MMS</i>. (96.9% ROBOTICS; 2.2% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42086410" target="_blank">Robust gait generator based on the LIPDF model for biped robot with five anti-disturbance strategies.</a></b> Li Y, Yuan Z, Li J, Yang P, Zeng Y, He J, Jia Z, <i>ISA transactions</i>. (97.6% ROBOTICS; 1.3% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42066641" target="_blank">Autonomous soft robotics: Revolutionizing motion with intelligence and flexibility.</a></b> Liu B, Zhang L, Wang B, Ding J, Xu L, <i>Advances in colloid and interface science</i>. (99.1% ROBOTICS; 0.3% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42076255" target="_blank">Gradient-Field-Based Force-Driven Control of a Mudskipper-Inspired Magnetic Microrobot for Intestinal Applications.</a></b> Du Y, Xie H, Zhang W, Mao Y, Li G, <i>Micromachines</i>. (99.4% ROBOTICS; 0.2% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42064179" target="_blank">Design an anthropomorphic dexterous hand for expressive piano performance.</a></b> Liang Y, Liu X, Yuan Y, Su C, Tao Y, Jin Y, Wang H, <i>Frontiers in neurorobotics</i>. (64.2% ROBOTICS; 9.3% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42076516" target="_blank">Gait Optimization Control of Spinal Quadruped Robot Based on Deep Reinforcement Learning.</a></b> Song G, Ai Q, Li L, Shan X, Yang C, Yang J, <i>Sensors (Basel, Switzerland)</i>. (93.4% ROBOTICS; 2.6% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42076247" target="_blank">A Compliant SMA-Actuated Capsule Robot with Integrated Locomotion and Steering for Wireless Capsule Endoscopy.</a></b> Alshorman AM, Al-Zu'bi BS, Ababneh OA, Al Manasra AR, Alshurman K, Alhmoud T, <i>Micromachines</i>. (98.1% ROBOTICS; 0.9% METHODS)<br />
<br />
<br />
<span style="font-size:16px"><b>*SPORT/EXERCISE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42082319" target="_blank">Biomechanical changes and recovery following a half-marathon: implications for training and injury prevention in recreational runners (PhD Academy Award).</a></b> Wang W, Potthast W, <i>British journal of sports medicine</i>. (98.2% SPORT/EXERCISE; 0.4% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42080232" target="_blank">Kinetics of lower limb joints during forehand loops with alternating and full-foot support patterns in table tennis.</a></b> Jin P, Yang C, Ba&#324;kosz Z, Sun B, Kong Q, Ren J, <i>Sports biomechanics</i>. (94.1% SPORT/EXERCISE; 2.5% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42071214" target="_blank">Emerging sports footwear technologies and their effects on running economy, biomechanics, and performance: a systematic review.</a></b> Alexe CI, Choudhary PK, Choudhary S, Saha S, Panaet EA, Alexe DI, <i>BMC sports science, medicine &amp;amp; rehabilitation</i>. (87.3% SPORT/EXERCISE; 7.0% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42083629" target="_blank">Author Response - Letter to the Editor Concerning:&quot;A Biomechanical Review of the Squat Exercise: Implications for Clinical Practice.&quot;.</a></b> Straub RK, Powers CM, <i>International journal of sports physical therapy</i>. (89.1% SPORT/EXERCISE; 2.9% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42083619" target="_blank">Letter to the Editor - A Biomechanical Review of the Squat Exercise: Implications for Clinical Practice.</a></b> vanWingerden JP, <i>International journal of sports physical therapy</i>. (91.1% SPORT/EXERCISE; 2.9% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42079995" target="_blank">Dynamic balance ability during single-leg drop landing across different age groups of junior gymnasts.</a></b> Kishi S, Nakane Y, Minami T, <i>Journal of physical therapy science</i>. (90.8% SPORT/EXERCISE; 5.6% POSTURE/BALANCE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42065176" target="_blank">Effect of flywheel resistance training on change of direction performance in team sports: A systematic review and meta-analysis.</a></b> Zhang J, Mi J, Liu R, <i>Medicine</i>. (99.3% SPORT/EXERCISE; 0.2% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42067405" target="_blank">The Kinematic Chain in Hindustani Classical Singing: An Exploratory Bioacoustic Pilot Study of Seated Posture and Vocal Quality.</a></b> Vishwaroop MH, <i>Journal of voice : official journal of the Voice Foundation</i>. (33.5% SPORT/EXERCISE; 21.7% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42076649" target="_blank">Validity of a Commercially Available Inertial Measurement Unit for Artificial Intelligence-Based Trick Detection and Kinematic Performance Assessment in Skateboarding.</a></b> Scholz B, Noth N, Witt M, Uebersch&amp;auml;r O, <i>Sensors (Basel, Switzerland)</i>. (70.7% SPORT/EXERCISE; 23.7% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42072267" target="_blank">Biomechanical Factors and Prevention Strategies for Sports-Related Muscle Injuries: A Narrative Review.</a></b> Ionite C, Indrei L, Gheorghi&#539;&#259; A, Caba B, Turnea M, Duduca I, Mucileanu C, Condurache I, Rotariu M, <i>Bioengineering (Basel, Switzerland)</i>. (58.7% SPORT/EXERCISE; 36.4% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42065089" target="_blank">Movement organization and neuromuscular coordination underlying offensive performance in para-fencing.</a></b> Mahdi N, Mahdi U, Sadiq IJ, Qaduri R, Mustafa N, Asi M, Bader M, Ismaeel SA, <i>Frontiers in sports and active living</i>. (98.1% SPORT/EXERCISE; 0.4% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42076456" target="_blank">Sensor-Based Analysis of the Influence of Score Status and Playing Position on the Most Demanding Passages in Elite Women's Football.</a></b> Karakoc B, Asci A, Chmura P, <i>Sensors (Basel, Switzerland)</i>. (98.4% SPORT/EXERCISE; 0.5% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42073105" target="_blank">Structured Activity and Free Outdoor Play in Early Childhood Education and Care: An OSRAC-P Observational Study of Physical Activity Intensity and Context.</a></b> Nikoli&#263; I, Mrakovi&#263; S, Hraski M, <i>Children (Basel, Switzerland)</i>. (79.6% SPORT/EXERCISE; 9.2% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42074552" target="_blank">Association of Cognition-Related Genetic Polymorphisms with Elite Athlete Status: A Meta-Analysis.</a></b> Akku&#351; E, Eyip&#305;nar CD, Buzdagli Y, <i>Genes</i>. (98.7% SPORT/EXERCISE; 0.2% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42064494" target="_blank">Association Between the Backhand Technique and the Prevalence of Dominant-Arm Elbow Pain and Low Back Pain in Tennis Players: A Cross-Sectional Study.</a></b> Colonna S, Postorino G, Tognon M, <i>Cureus</i>. (96.1% SPORT/EXERCISE; 2.4% ERGONOMICS)<br />
<br />
<br />
<span style="font-size:16px"><b>*TENDON/LIGAMENT*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42088627" target="_blank">Biomechanical comparison of tendon graft suturing techniques in arthroscopic ligament reconstruction using a novel knotless method in a cadaveric model.</a></b> Babu KM, Gipson Samuel T, Dwajan A, Patro DR, <i>Journal of clinical orthopaedics and trauma</i>. (76.2% TENDON/LIGAMENT; 20.1% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42082749" target="_blank">Position dependent elasticity of the anterior talofibular ligament in healthy young women: an in-vivo shear wave elastography study.</a></b> Chen Z, Zhou W, Liang H, Liu X, Li Y, Yang L, Xiang H, Du R, <i>European journal of applied physiology</i>. (97.4% TENDON/LIGAMENT; 1.0% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42065726" target="_blank">Bioinductive scaffold augmentation of the patellar tendon: a scoping review of indications, techniques and early outcomes.</a></b> Khaled K, Elshoura A, Bozer Kavaku M, Papakostas E, <i>International orthopaedics</i>. (87.3% TENDON/LIGAMENT; 6.4% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42069135" target="_blank">Partial Tear at the Musculotendinous Junction of the Teres Major after Anterior Latissimus Dorsi and Teres Major Tendon Transfer: Associated Factors and Clinical Impact in 256 Patients.</a></b> Baek CH, Lim C, Kim JG, Kim BT, Kim SJ, <i>Journal of shoulder and elbow surgery</i>. (55.6% TENDON/LIGAMENT; 23.5% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42061491" target="_blank">Anatomy data driven mechanical adaptation of bone tunnel-screw interface in ACL reconstruction.</a></b> Jiang WB, Shi XZ, Gu JQ, Jin XX, Wang JW, Luo WW, Shah MAA, Wang HK, Li C, Gilmore C, Fang X, Chen W, Yu SB, Sui HJ, <i>Bone</i>. (73.7% TENDON/LIGAMENT; 12.7% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42061490" target="_blank">Collagen behavior in the human broad ligament under biaxial tensile testing with small-angle X-ray scattering.</a></b> Vom Scheidt A, Niestrawska JA, Liprandi D, Meuser AH, Hucke L, Fiedler IAK, Sochor B, Schwartzkopf M, Schulze-Tanzil GG, Sambale A, Euchler E, M&amp;ouml;bius D, Ondruschka B, Hammer N, <i>Acta biomaterialia</i>. (94.1% TENDON/LIGAMENT; 4.3% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42078348" target="_blank">Micro-Doppler Radar Identifies Movement Asymmetries After Anterior Cruciate Ligament Reconstruction.</a></b> Onks CA, Zeng C, Creath RA, Simone BD, Nyland JE, Murphy TE, Kishel LA, Ardat B, Venezia VA, Wiggins AM, Shaffer BR, Narayanan RM, <i>medRxiv : the preprint server for health sciences</i>. (48.6% TENDON/LIGAMENT; 22.4% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42078444" target="_blank">Hyperlipidemia-induced metabolic dysregulation impairs tendon homeostasis: the role of TGF-&#946;/Smad2 signaling pathway in lipid-mediated extracellular matrix remodeling.</a></b> Shang P, Li R, Xia Y, Wang Z, Yang R, Fu Q, <i>Frontiers in medicine</i>. (93.0% TENDON/LIGAMENT; 3.9% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42072237" target="_blank">Anterior Cruciate Ligament Tissue Engineering: Biological Principles, Engineered Substitutes, and Preclinical Outcomes.</a></b> Simon F, Caneparo C, Moreira-Pereira J, Chabaud S, <i>Bioengineering (Basel, Switzerland)</i>. (87.4% TENDON/LIGAMENT; 8.7% TISSUE/BIOMATERIAL)<br />
<br />
<br />
<span style="font-size:16px"><b>*TISSUE/BIOMATERIAL*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42079503" target="_blank">Mechanically adaptive materials with tunable stiffness for biomedical devices: Mechanisms, applications, and perspectives.</a></b> Xu J, Lin R, Huo D, Li J, Ghita OR, Evans KE, Hua X, <i>Materials today. Bio</i>. (87.3% TISSUE/BIOMATERIAL; 4.5% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42092868" target="_blank">Biomimetic bone-like regeneration potentiality and strength development of Mg Zn Ca alloys for maxillofacial application.</a></b> Shalaby HA, Salah R, Shoeib MA, Koronfoly GA, Mostafa MH, Ibrahim HM, <i>BMC oral health</i>. (61.5% TISSUE/BIOMATERIAL; 28.6% DENTAL/ORAL/FACIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42080976" target="_blank">Ventriculovesical shunting in pediatric hydrocephalus with neurogenic bladder: a salvage case series and biomechanical considerations.</a></b> Delia&#287;a H, G&amp;uuml;ndo&#287;du EB, A&#287;ar MK, Kaya M, <i>Child's nervous system : ChNS : official journal of the International Society for Pediatric Neurosurgery</i>. (15.6% TISSUE/BIOMATERIAL; 10.2% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42082149" target="_blank">Engineered natural extracellular matrix platform for modelling skin diseases and therapeutic targets discovery.</a></b> Malta MD, Fernandes MG, Martins L, Andre A, Martins P, Pires RA, Novoa-Carballal R, Os&amp;oacute;rio H, Guttmann-Gruber C, Kocher T, Cerqueira MT, Marques AP, <i>Journal of advanced research</i>. (91.8% TISSUE/BIOMATERIAL; 5.7% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42069942" target="_blank">TNF-&#945; and IL-1&#946; but not IL-18 counteract TGF-&#946;1 mediated stimulation of collagen accumulation and increased extracellular matrix strength and stiffness.</a></b> Angelo KS, Brickman A, Morgan JR, <i>Scientific reports</i>. (74.5% TISSUE/BIOMATERIAL; 20.4% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42068185" target="_blank">Copolymers of Poly(Butylene Trans-1,4-Cyclohexanedicarboxylate)/Pripol as New Biomaterial Platform for Small Diameter Vascular Graft.</a></b> Bondi E, Obino G, Guidotti G, Sensini A, van Griensven M, Lepedda AJ, Lotti N, Moroni L, <i>Advanced healthcare materials</i>. (62.7% TISSUE/BIOMATERIAL; 33.9% CARDIOVASCULAR/CARDIOPULMONARY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42067924" target="_blank">Curcumin-loaded dynamic crosslinked injectable hydrogel for annulus fibrosus repair and disc degeneration prevention.</a></b> Zhang Q, Kang M, Dong R, Tang X, Qu Y, <i>Journal of orthopaedic surgery and research</i>. (66.7% TISSUE/BIOMATERIAL; 23.2% ORTHOPAEDICS/SPINE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42078418" target="_blank">Functionalized chitosan-graphene magnetic nanocomposites enhance collagen synthesis in scleral fibroblasts.</a></b> Huang X, Wang Z, Zhang M, Dai Y, Tian R, <i>Open life sciences</i>. (74.0% TISSUE/BIOMATERIAL; 14.1% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42068792" target="_blank">Electrospun vascular adventitia-derived ECM/PCL fiber-co-hydrogel scaffold: A novel approach to vascular regeneration with enhanced cell affinity and tunable biomechanical properties.</a></b> Xie C, Wu Z, Wu Q, Chen Z, Chen S, Yi L, Deng C, Yuan H, Lu T, Liu Y, Huang C, <i>Biomaterials</i>. (87.5% TISSUE/BIOMATERIAL; 8.8% CARDIOVASCULAR/CARDIOPULMONARY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42067170" target="_blank">Plant-inspired implantable therapeutic systems: quantitative structure-property-function design of hierarchical biomaterials.</a></b> Maheshwari N, Sharma M, Maheshwari R, <i>International journal of pharmaceutics</i>. (86.1% TISSUE/BIOMATERIAL; 5.3% BOTANY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42066931" target="_blank">Piezoelectric materials for tissue engineering and regenerative medicine: from fundamental principles to clinical applications.</a></b> KarbalaeiMahdi A, Moridi K, Esmaeili Z, Seifalian N, Chauhan NPS, Seifalian AM, <i>Acta biomaterialia</i>. (98.5% TISSUE/BIOMATERIAL; 0.3% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42094606" target="_blank">Mechanomedicine in digestive surgery: a theranostic framework integrating mechanical diagnostics and therapeutic modulation across the perioperative continuum.</a></b> Liu N, Wang X, Liu N, Xu F, Wen T, <i>Theranostics</i>. (45.9% TISSUE/BIOMATERIAL; 11.3% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42073800" target="_blank">Modeling of Biomechanical and Functional Parameters of Hydrogel-Cell Composites Fabricated by 3D Bioprinting Using AI-Supported Approach.</a></b> Rojek I, Gniadek M, Kopowski J, Kloskowski T, Miko&#322;ajewski D, <i>Materials (Basel, Switzerland)</i>. (52.7% TISSUE/BIOMATERIAL; 19.7% MODELING)<br />
<br />
<br />
<span style="font-size:16px"><b>*TRAUMA/IMPACT*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42087210" target="_blank">Spatial associations between neuronal membrane damage and vasculature after repetitive diffuse TBI in pigs.</a></b> Wofford KL, Purvis Conway EM, Acero VP, Gao J, Rivellini OM, Kuo E, Mietus CJ, Browne KD, O'Donnell JC, Cullen DK, <i>Acta neuropathologica communications</i>. (89.8% TRAUMA/IMPACT; 5.7% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42085710" target="_blank">Maxillofacial trauma secondary to airbag deployment: A scoping review.</a></b> Tokashiki ET, Albuquerque Fernandes L, Bottura L, de Oliveira NK, Melhem-Elias F, Grillo R, <i>Traffic injury prevention</i>. (94.9% TRAUMA/IMPACT; 1.9% DENTAL/ORAL/FACIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42081003" target="_blank">Injuries in Cricket: A Review.</a></b> Nawabi O, Pandya N, <i>Current reviews in musculoskeletal medicine</i>. (56.6% TRAUMA/IMPACT; 32.7% SPORT/EXERCISE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42072798" target="_blank">The Distribution and Fracture Patterns of Mandibular Fractures Due to Traffic Accidents: A Retrospective Study.</a></b> Turan &amp;Ouml;, Alt&#305;n &#304;, <i>Diagnostics (Basel, Switzerland)</i>. (82.7% TRAUMA/IMPACT; 12.7% DENTAL/ORAL/FACIAL)<br />
<br />
<br />
<span style="font-size:16px"><b>*VETERINARY/AGRICULTURAL*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42072007" target="_blank">Effects of Simulated Typhoon Stress on Ovarian Function in Wenchang Chickens: An Exploration Based on the Microbiota-Gut-Brain-Ovarian Axis.</a></b> Zhang B, Gu L, Lu Y, Jiang Q, Zheng X, Xu T, <i>Animals : an open access journal from MDPI</i>. (92.7% VETERINARY/AGRICULTURAL; 5.2% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42071974" target="_blank">Age-Associated Differences in Paddock Locomotor Activity Among Senior Horses: A Pilot Observational Study.</a></b> Poinsard L, Anson C, Billat V, <i>Animals : an open access journal from MDPI</i>. (96.2% VETERINARY/AGRICULTURAL; 3.0% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42063425" target="_blank">Kinematic and biomechanical estimates of head and neck loading during the long attack in IGP protection work dogs.</a></b> Vilar JM, Lopedote M, Valentini S, Marrero I, Spinella G, <i>Frontiers in veterinary science</i>. (93.1% VETERINARY/AGRICULTURAL; 3.7% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42071923" target="_blank">Flexible Intramedullary Nails for Stabilization of Transverse Femoral Fractures in Cats: Ex Vivo Biomechanical Characterization.</a></b> Abibe RB, Rahal SC, Rodriguez RQ, Cassanego GR, Caldeira FMC, Kobbe P, Eschweiler J, Nicolini LF, <i>Animals : an open access journal from MDPI</i>. (97.7% VETERINARY/AGRICULTURAL; 0.5% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42071902" target="_blank">Ex Vivo Computed Tomographic Morphometry and Motion of the Native and Fractured Equine Accessory Carpal Bone.</a></b> Gernhardt J, Reuter T, Fritsch G, Schulze N, M&amp;auml;hlmann K, Lischer C, <i>Animals : an open access journal from MDPI</i>. (98.0% VETERINARY/AGRICULTURAL; 0.6% HAND/FINGER/FOOT/TOE)<br />
<br />
<br />
<span style="font-size:16px"><b>*VISUAL/VESTIBULAR*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42093835" target="_blank">A dual-pronged strategy for bacterial keratitis: ROS-responsive hydrogel eye drops enabling potent deep-tissue antibacterial action and NETs modulation.</a></b> Wang Y, Dong Z, Yao H, Li Y, Cui D, Cao B, Zhang R, <i>Bioactive materials</i>. (80.9% VISUAL/VESTIBULAR; 15.9% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42088732" target="_blank">Numerical analysis of three-dimensional middle ear and inner ear based on nonlinear and viscoelastic constitutive relations.</a></b> Yao W, Wang J, Ye J, <i>Mechanobiology in medicine</i>. (75.7% VISUAL/VESTIBULAR; 12.9% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42086588" target="_blank">Eye movement kinematics reveal novel circadian organization of sleep substates.</a></b> Choudhary V, Heller CR, Aimon S, de Sardenberg Schmid L, Li JM, Robson DN, <i>Nature communications</i>. (29.2% VISUAL/VESTIBULAR; 28.1% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42085612" target="_blank">N, S Co-Doped Carbon Quantum Dots-Riboflavin Composite Photosensitizers for Enhanced Iontophoresis-Assisted Corneal Cross-Linking.</a></b> Xu T, Liu Y, Zhang W, Jiang Q, Jin Y, Lin L, Wang L, Gu Z, Lin M, Chen S, <i>Advanced science (Weinheim, Baden-Wurttemberg, Germany)</i>. (79.9% VISUAL/VESTIBULAR; 17.2% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42070647" target="_blank">Differential Posterior Pole Morphology in Pediatric Myopia in Chinese Children: An Ultra-Widefield OCT Analysis of Retinal Curvature.</a></b> Chang L, Fu C, Jian W, Duan J, Li D, <i>Photodiagnosis and photodynamic therapy</i>. (93.1% VISUAL/VESTIBULAR; 4.2% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42067630" target="_blank">Unified modelling of gaze and pupil dynamics in saccadic tasks.</a></b> Espinosa J, Guisot M, Larrosa A, P&amp;eacute;rez J, <i>Scientific reports</i>. (83.5% VISUAL/VESTIBULAR; 5.0% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42061598" target="_blank">Cross-linked actin networks (CLANs) and their role in the trabecular meshwork.</a></b> Huang A, Dalloul JM, Sugali CK, Dhamodaran K, Dai J, Rai A, McLellan GJ, Mao W, <i>Experimental eye research</i>. (37.6% VISUAL/VESTIBULAR; 29.5% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42061126" target="_blank">Stratified corneal densitometry and biomechanical properties in human eyes: A Scheimpflug analysis.</a></b> Zhang D, Zhang H, Zheng Y, Fu C, Tian L, Liu M, Liu Z, Zhai C, Li L, <i>Journal of biomechanics</i>. (81.6% VISUAL/VESTIBULAR; 14.5% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42089074" target="_blank">Reversible cupping and persistent vessel narrowing after glaucoma surgery in childhood glaucoma: a quantitative fundus photograph study.</a></b> Zhang M, Sun L, Lin C, Yu X, Shi Y, Fan Z, <i>Frontiers in medicine</i>. (98.2% VISUAL/VESTIBULAR; 0.8% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42072191" target="_blank">Intraocular Micro-LED Epiretinal Projection for Anterior Segment Blindness: Design and Large-Animal Feasibility Study.</a></b> Zhang B, Yang J, Jiang H, Gui Z, Xu S, <i>Bioengineering (Basel, Switzerland)</i>. (95.6% VISUAL/VESTIBULAR; 1.6% 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/42069135" target="_blank">Partial Tear at the Musculotendinous Junction of the Teres Major after Anterior Latissimus Dorsi and Teres Major Tendon Transfer: Associated Factors and Clinical Impact in 256 Patients.</a></b> Baek CH, Lim C, Kim JG, Kim BT, Kim SJ, <i>Journal of shoulder and elbow surgery</i>. (55.6% TENDON/LIGAMENT; 23.5% ORTHOPAEDICS/SURGERY)&#8203;<br />
&#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/49475-literature-update-may-01-2026-may-07-2026</guid>
		</item>
		<item>
			<title><![CDATA[Funded MASc Position in Biomedical Engineering, Cardiac Medical Devices &amp;amp; Tissue Mechanics - University of Waterloo, Canada]]></title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49473-funded-masc-position-in-biomedical-engineering-cardiac-medical-devices-tissue-mechanics-university-of-waterloo-canada</link>
			<pubDate>Thu, 07 May 2026 17:15:28 GMT</pubDate>
			<description><![CDATA[Research Opportunity: The Personalized Biomechanics (PB) Research Lab at the University of Waterloo&#8203;, directed by Dr. Jonathan Kusins, develops...]]></description>
			<content:encoded><![CDATA[<span style="font-family:Arial"><b>Research Opportunity: </b>The Personalized Biomechanics (PB) Research Lab at the University of Waterloo</span>&#8203;<span style="font-family:Arial">, directed by Dr. Jonathan Kusins, develops biomechanical tools and pre-clinical evaluation methods that improve how medical devices are designed and assessed prior to clinical implementation. This funded MASc position is part of a research collaboration with a leading medical device industry partner and a practicing cardiac electrophysiologist, advancing pre-clinical evaluation tools for catheter-based therapies used to treat cardiac arrhythmias.<br />
<br />
<b>What You Will Do</b></span><ul><li><span style="font-family:Arial">Design and conduct biomechanical experiments on biological and synthetic tissue specimens</span></li>
<li><span style="font-family:Arial">Develop benchtop testing platforms for pre-clinical medical device evaluation</span></li>
<li><span style="font-family:Arial">Apply advanced experimental techniques including mechanical testing, imaging, and 3D printing</span></li>
<li><span style="font-family:Arial">Collaborate with industry R&amp;D and have the opportunity to observe clinical procedures alongside our clinical partner</span></li>
</ul><span style="font-family:Arial"><b>Start Date: </b>September 2026<br />
<br />
<b>Why Apply</b></span><ul><li><span style="font-family:Arial">Collaborative, supportive, and idea-driven research department and environment</span></li>
<li><span style="font-family:Arial">Translational research at the intersection of biomechanics and cardiovascular medicine</span></li>
<li><span style="font-family:Arial">Integrated mentorship spanning engineering, clinical, and industry expertise</span></li>
<li><span style="font-family:Arial">Learn more about the <a href="https://uwaterloo.ca/biomedical-engineering/graduate-studies" target="_blank">BME graduate program at Waterloo</a> (<a href="https://uwaterloo.ca/biomedical-engineering/graduate-studies" target="_blank">https://uwaterloo.ca/biomedical-engi...aduate-studies</a>)</span></li>
</ul><span style="font-family:Arial"><b>Eligibility Requirements</b></span><ul><li><span style="font-family:Arial">Bachelor&#8217;s degree in Biomedical Engineering, Mechanical Engineering, Mechatronics, or a related engineering or science discipline</span></li>
<li><span style="font-family:Arial">Interest or experience in experimental biomechanics, medical device evaluation, mechanical testing, imaging, and/or 3D printing</span></li>
<li><span style="font-family:Arial">Strong communication, problem-solving, and teamwork skills</span></li>
<li><span style="font-family:Arial">(<b>Asset</b>) Prior research or industry experience</span></li>
</ul><span style="font-family:Arial"><b>How to Apply</b><br />
<br />
Please email the following to <b>PBresearchlab@outlook.com</b> with the subject line: <b>&quot;Application for MASc Opportunity &#8211; [Your Name]&quot;</b></span><ul><li><span style="font-family:Arial">CV</span></li>
<li><span style="font-family:Arial">Academic transcripts</span></li>
<li><span style="font-family:Arial">Brief statement of interest</span></li>
</ul><span style="font-family:Arial">Please contact myself (jkusins@uwaterloo.ca</span>&#8203;)<span style="font-family:Arial"> if you have any additional questions! Applications will be reviewed on a rolling basis until the position is filled. We thank all candidates for their interest; however, only candidates invited for an interview will be contacted.</span>]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions">Jobs and Positions</category>
			<dc:creator>jkusins</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49473-funded-masc-position-in-biomedical-engineering-cardiac-medical-devices-tissue-mechanics-university-of-waterloo-canada</guid>
		</item>
		<item>
			<title>3D-AHM 2026 in South Africa</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49474-3d-ahm-2026-in-south-africa</link>
			<pubDate>Thu, 07 May 2026 15:21:55 GMT</pubDate>
			<description />
			<content:encoded />
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions">Jobs and Positions</category>
			<dc:creator>Georgios Stylianides</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49474-3d-ahm-2026-in-south-africa</guid>
		</item>
		<item>
			<title>Funded PhD Assistantship in Biomechanics - Montana State University - Bozeman</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49467-funded-phd-assistantship-in-biomechanics-montana-state-university-bozeman</link>
			<pubDate>Wed, 06 May 2026 15:41:05 GMT</pubDate>
			<description><![CDATA[&#8203;The Neuromuscular Biomechanics Lab (https://www.montana.edu/biomechanics/people/curtze.html) at Montana State University is recruiting a fully...]]></description>
			<content:encoded><![CDATA[&#8203;The <a href="https://www.montana.edu/biomechanics/people/curtze.html" target="_blank">Neuromuscular Biomechanics Lab</a> at Montana State University is recruiting a fully funded PhD student starting in Fall 2026. The selected individual will work with <a href="https://www.montana.edu/fsnk/directory/2630261/carolin-curtze" target="_blank">Dr. Carolin Curtze </a>on a project focused on wearable inertial sensor systems for continuous monitoring of slip-related falls during daily life.<br />
<br />
The student will join the PhD program in Exercise and Nutrition Sciences with a focus on Motor Control and complete the associated curriculum (link below).<br />
&#8203;<br />
Preferred qualifications:<ul><li>&#8203;Biomechanics, biomedical engineering, kinesiology, neuroscience, physical therapy, or related field</li>
<li>Curiosity and capacity to learn</li>
<li>Commitment to scientific rigor</li>
<li>Strong data analysis and coding experience</li>
<li>Ability to work collaboratively in a diverse team</li>
<li>Experience in programming (e.g., Matlab) is desired, but not required</li>
<li>Experience in wearable sensor technology or 3D movement analysis (e.g., motion capture, force platforms) is desired, but not required</li>
<li>Experience in working with clinical populations is desired, but not required&#8203;</li>
</ul><br />
To apply or inquire: Please email a CV, brief statement of research interests/experience, and contact information for references to:<br />
<br />
Carolin Curtze, PhD<br />
<a href="http://Carolin.Curtze@montana.edu" target="_blank">Carolin.Curtze@montana.edu</a><br />
<br />
<br />
Faculty Profile: <a href="https://www.montana.edu/fsnk/directory/2538865/tyler-whittier" target="_blank">https://www.montana.edu/fsnk/directory/2630261/carolin-curtze</a><br />
PhD Program Curriculum: <a href="https://catalog.montana.edu/graduate/education-health-human-development/foodsystems-nutrition-kinesiology/exercise-nutrition-sciences/" target="_blank">https://catalog.montana.edu/graduate...tion-sciences/&#8203;</a>&#8203;]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions">Jobs and Positions</category>
			<dc:creator>Carolin Curtze</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49467-funded-phd-assistantship-in-biomechanics-montana-state-university-bozeman</guid>
		</item>
		<item>
			<title>PhD Position: Prosthesis User Locomotion | Perth, Australia</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49464-phd-position-prosthesis-user-locomotion-perth-australia</link>
			<pubDate>Tue, 05 May 2026 04:03:58 GMT</pubDate>
			<description>Are you passionate about biomechanics, assistive tech, and improving outcomes for people with limb loss? We are seeking applicants for a PhD...</description>
			<content:encoded><![CDATA[Are you passionate about biomechanics, assistive tech, and improving outcomes for people with limb loss? We are seeking applicants for a PhD scholarship at Edith Cowan University (ECU) as part of an exciting research project exploring knee joint loading in below-knee unilateral prosthesis users. Further details are provided in the linked <b><a href="https://intranet.ecu.edu.au/__data/assets/pdf_file/0005/1142645/Exploring-intact-limb-knee-joint-loading-in-below-knee-unilateral-prosthesis-users.pdf" target="_blank">Project Description</a></b>.<br />
<br />
This PhD project will be undertaken within a collaborative, interdisciplinary team including Dr Kirsty McDonald (ECU), Professor Tony Blazevich (ECU), and Professor Jeanette Thom (The University of Sydney).<br />
<br />
Successful scholarship applicants will receive a PhD stipend of $37,500 per year, with an expected start date before 1 December 2026. More information about scholarships can be found on the <a href="https://www.ecu.edu.au/scholarships/details/ecu-hdr-scholarship" target="_blank"><b>Scholarships</b><b> Page</b></a>.&#8203;<br />
<br />
If you wish to be considered for this opportunity, please send a cover letter and CV to <a href="mailto:kirsty.mcdonald@ecu.edu.au">kirsty.mcdonald@ecu.edu.au</a> by <b>Saturday 16 May 2026 at 5:00 pm (AWST)</b>. Your cover letter should describe your experience, interest in the role, and why you would be a good fit for the position.<br />
<br />
For further information, please contact: <a href="mailto:kirsty.mcdonald@ecu.edu.au">kirsty.mcdonald@ecu.edu.au</a>.&#8203;]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions">Jobs and Positions</category>
			<dc:creator>Kirsty McDonald</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49464-phd-position-prosthesis-user-locomotion-perth-australia</guid>
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			<title><![CDATA[Postdoctoral Position in Continuum Mechanics and Hexapod-Based Testing of Joint Mechanics &#8211; Univ. Montpellier, France]]></title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49463-postdoctoral-position-in-continuum-mechanics-and-hexapod-based-testing-of-joint-mechanics-%E2%80%93-univ-montpellier-france</link>
			<pubDate>Mon, 04 May 2026 21:05:40 GMT</pubDate>
			<description>Post-Doctoral Fellowship in Robotics/Biomechanics at LMGC, University of Montpellier, France 
 
TITLE: Multiscale characterization of...</description>
			<content:encoded><![CDATA[<a href="https://umontpellierfr-my.sharepoint.com/:b:/g/personal/cristina_cavinato_umontpellier_fr/IQBx0WVVhGOcQoGPcezyogMgAe53dBHyZqDr0melSrGwiQg?e=ZIyDW0" target="_blank"><span style="font-size:14px"><b>Post-Doctoral Fellowship in Robotics/Biomechanics at LMGC, University of Montpellier, France</b><br />
<br />
<b>TITLE:</b> <b>Multiscale characterization of mechanobiological responses in articular cartilage under biomimetic robotic stimulation</b></span></a><br />
<br />
<b>DURATION:</b> 18 months (potential extension)<br />
<b>LOCATION:</b> University of Montpellier &#8211; LMGC, in collaboration with LIRMM, IRMB, and the industrial partner Symetrie<br />
<b>START DATE:</b> Mid 2026<br />
<b>DEADLINE APPLICATION :</b> May 31, 2026<br />
<br />
<b>POSITION OVERVIEW</b><br />
The funded project aims to investigate the mechanobiological response of murine articular cartilage and intervertebral discs by replicating physiological loading conditions using a novel robotic platform compatible with advanced microscopy techniques. At the core of this platform is a <b>Miniaturized hexapod robot</b>, developed by the industrial partner Symetrie, which enables submicron-resolution, multi-axial motion finely controlled in terms of displacement, force, and velocity. The postdoctoral researcher will be responsible for the robotic development and integration required to adapt this system for high-precision, dynamic biomechanical testing. This includes:<ul><li>improving actuation control (speed and smoothness of motion),</li>
<li>ensuring synchronization with imaging systems (e.g., micro-CT, OCT, multiphoton microscopy, SEM),</li>
<li>developing customized loading protocols that mimic physiological conditions.</li>
</ul>&#8203;This interdisciplinary project bridges biomechanics, robotics, imaging, and biology, with the goal of uncovering micro- and nanoscale deformation mechanisms of cells within their native tissue environments, under both healthy and pathological conditions (e.g., osteoarthritis, inflammation). Experimental data obtained from ex vivo robotic tests will inform multiscale numerical models of tissue mechanotransduction, calibrated using in vivo murine gait analysis and behavioral tracking provided by IRMB.<br />
<br />
ENVIRONMENT<br />
<b>LMGC &#8211; </b><b>Laboratoire de Mecanique et Genie Civil </b><a href="https://lmgc.umontpellier.fr/" target="_blank">lmgc.umontpellier.fr/</a><br />
Joint research unit of the University of Montpellier and CNRS (~120 members). The BIOTIC team specializes in biomechanics of soft tissues, tissue imaging (multiphoton, SEM, micro-CT), and mechano-biological modeling.<br />
<b>LIRMM &#8211; Laboratoire d&#8217;Informatique, de Robotique et de Microelectronique Montpellier </b><a href="https://www.lirmm.fr/" target="_blank">www.lirmm.fr/</a><br />
Joint research unit of University of Montpellier and CNRS (~400 members). The DEXTER team (robotics department) focuses on surgical robotics and parallel kinematics, designing high-performance robots capable of fast, fine, precise movements.<br />
<b>IRMB / Cartigen &#8211; OsteoStart </b><a href="https://www.chu-montpellier.fr/fr/cartigen" target="_blank">www.chu-montpellier.fr/fr/cartigen</a> , <a href="https://irmb-montpellier.fr/single-service/osteostart-platform/" target="_blank">irmb-montpellier.fr/single-service/osteostart-platform/</a><br />
The Institute for Regenerative Medicine and Biotherapy (IRMB) brings together University Hospital Center of Montpellier, INSERM, and University of Montpellier. CARTIGEN platform specializes in motion modeling, 3D printing, and regenerative medicine approaches. The OsteoStart platform develops non-invasive in vivo murine movement analysis for osteo-articular disorders, testing cell and gene therapies in pre-clinical trials.&#8203;&#8203;<br />
SYMETRIE - <a href="https://symetrie.fr/" target="_blank">https://symetrie.fr/</a><br />
French company specialized in precision hexapods for 25 years<br />
<br />
REQUIRED QUALIFICATIONS<ul><li>Recent (&#8804;2 years) PhD in Biomechanics, Mechanical Engineering, Robotics, Bioengineering or related field</li>
<li>Strong background in experimental biomechanics and/or robotics</li>
<li>Experience with microscopy and image analysis (a plus)</li>
<li>Strong programming skills</li>
<li>Strong communication skills and ability to work in an interdisciplinary environment</li>
<li>Interest in translational research at the interface of mechanics, biology, and medical devices</li>
</ul>FUNDING<ul><li>Fully funded by University of Montpellier and ANR</li>
<li>Duration: 18 months (possible extension)</li>
</ul>APPLICATION PROCEDURE Applicants must submit:<ul><li>Detailed CV with publications and diplomas</li>
<li>Cover letter highlighting relevant experience and motivation</li>
<li>Contact information for at least two academic references</li>
</ul><b>Send applications to:</b><br />
<b>Cristina Cavinato &#8212; <a href="mailto:cristina.cavinato@umontpellier.fr">cristina.cavinato@umontpellier.fr</a><br />
Sebastian Krut &#8212; <a href="mailto:sebastien.krut@lirmm.fr">sebastien.krut@lirmm.fr</a></b><br />
<br />
RELEVANT REFERENCES<br />
Cavinato et al, 2021. <i>Mech. Ageing Dev.</i> 196, 111471<br />
Kirnaz et al, 2021. <i>Int. J. Spine Surg.</i> 15, 10&#8211;25<br />
Kloefkorn et al, 2015. <i>Arthritis Res Ther.</i> 17, 287<br />
Mausset-Bonnefont et al, 2025. <i>Arthritis Res. Ther.</i> 27, 42<br />
Orozco et al, 2022. <i>PLOS Comput. Biol.</i> 18, e1009398<br />
Petitjean et al, 2021. <i>Mater. Sci. Eng. C</i> 121, 111800&#8203;]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions">Jobs and Positions</category>
			<dc:creator>Cristina Cavinato</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49463-postdoctoral-position-in-continuum-mechanics-and-hexapod-based-testing-of-joint-mechanics-%E2%80%93-univ-montpellier-france</guid>
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			<title>Funded PhD position in brain finite element modeling and machine learning within the Department of Biomedical Engineering at UT San Antonio</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49462-funded-phd-position-in-brain-finite-element-modeling-and-machine-learning-within-the-department-of-biomedical-engineering-at-ut-san-antonio</link>
			<pubDate>Mon, 04 May 2026 04:02:46 GMT</pubDate>
			<description>This PhD position is available within the Department of Biomedical Engineering at the University of Texas at San Antonio for Fall 2026 in the area of...</description>
			<content:encoded><![CDATA[<span style="font-family:Aptos">This PhD position is available within the Department of Biomedical Engineering at the University of Texas at San Antonio for Fall 2026 in the area of brain biomechanics focused on computational modeling and traumatic brain injury. This is a part of an NSF funded project to study the effect of brain structural variability on brain injury susceptibility and develop AI-driven predictive framework for brain trauma.</span><br />
<span style="font-family:Aptos">Applicants are sought who possess solid knowledge of finite element modeling, continuum mechanics, machine learning, and neuroimage processing. Experience in working with FE software such as LS-DYNA and programming languages s required.<br />
<br />
Successful applicants will have a B.S. or M.S. (preferred) degree in either Mechanical Engineering or Biomedical Engineering, or a related engineering field.<br />
<br />
Interested candidates should send a curriculum vitae, transcripts along with the contact information of three references that could be contacted.<br />
<br />
Please email applications to: Marzieh Memar (formerly Hajiaghamemar) at <a href="mailto:marzieh.memar@utsa.edu">marzieh.memar@utsa.edu</a></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>Marzieh Hajiaghamemar (Memar)</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49462-funded-phd-position-in-brain-finite-element-modeling-and-machine-learning-within-the-department-of-biomedical-engineering-at-ut-san-antonio</guid>
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			<title>LITERATURE UPDATE Apr 24, 2026 - Apr 30, 2026</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/literature-update/49460-literature-update-apr-24-2026-apr-30-2026</link>
			<pubDate>Fri, 01 May 2026 14:13:15 GMT</pubDate>
			<description><![CDATA[LITERATURE UPDATE 
Apr 24, 2026 - Apr 30, 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 />
Apr 24, 2026 - Apr 30, 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>.&#8203;<br />
<br />
Biomch-L LinkedIn: <a href="https://www.linkedin.com/in/biomch-l-06359638a/" target="_blank">https://www.linkedin.com/in/biomch-l-06359638a/</a>.<br />
<br />
<br />
<br />
<span style="font-size:16px"><b>*BONE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42051047" target="_blank">Effects of romosozumab on bone strength around a pedicle screw as evaluated by biomechanical computed tomography-based virtual stress tests in postmenopausal women.</a></b> Keaveny TM, Oates M, Betah D, Shi Y, Timoshanko J, Lee DC, Bydon M, Krohn K, Ishikawa K, <i>The spine journal : official journal of the North American Spine Society</i>. (50.1% ORTHOPAEDICS/SPINE; 40.1% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42032148" target="_blank">Statistical shape modeling of the proximal femur in Mexican women: a cross-sectional morphometric and densitometric study.</a></b> Cruz-Priego GA, Medina-Rodr&amp;iacute;guez F, Torres-Gonz&amp;aacute;lez R, Clark P, <i>Archives of osteoporosis</i>. (96.2% BONE; 0.9% METHODS)<br />
<br />
<br />
<span style="font-size:16px"><b>*BOTANY*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42034396" target="_blank">Development of a nanoparticle-mediated RNAi delivery system based on the biological function of G protein-CoupledReceptor Bxgoa-1 for efficient controlling pine wilt disease.</a></b> Tao Y, Yang C, Liu Z, Tan J, Wang J, Dai T, <i>Pesticide biochemistry and physiology</i>. (87.6% BOTANY; 3.5% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42049091" target="_blank">Differential homogalacturonan metabolic mechanisms in cellular regions of fruits during postharvest ripening and senescence.</a></b> Huang W, Jin J, Wu S, Liu Y, Wu D, Xi W, Chen K, <i>Journal of advanced research</i>. (95.3% BOTANY; 0.9% CELLULAR/SUBCELLULAR)<br />
<br />
<br />
<span style="font-size:16px"><b>*CARDIOVASCULAR/PULMONARY*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42047251" target="_blank">Integrating Uncertainty Quantification into Computational Fluid Dynamics Models of Coronary Arteries Under Steady Flow.</a></b> Usman M, Castillo P, Narayan A, Timmins LH, <i>Journal of biomechanical engineering</i>. (50.0% MODELING; 45.8% CARDIOVASCULAR/CARDIOPULMONARY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42055155" target="_blank">An efficient framework to assess the predictive value of 4D ultrasound-based wall motion indices for abdominal aortic aneurysm rupture risk stratification.</a></b> Sch&amp;ouml;nborn M, Hegner A, Derwich W, Oikonomou K, Hu&amp;szlig; A, G&amp;aacute;mez AJ, Wittek A, Blase C, <i>Acta biomaterialia</i>. (90.5% CARDIOVASCULAR/CARDIOPULMONARY; 3.8% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42036733" target="_blank">Identification of Autologous Tissue Sources and Optimization of a Treatment Method for Intraoperative Manufacturing of Heart Valve Constructs.</a></b> Steitz M, Khan MB, Fritsch K, Breitenstein-Attach A, Korbacher JKB, Modolell Y Mainou JJ, Schrimpf K, Ramm R, Knigge S, Eildermann K, Arlt G, Schulz A, Kiekenap JFS, Warnack B, Kramer P, Edelmann F, Berger F, Schmitt B, <i>Artificial organs</i>. (56.2% CARDIOVASCULAR/CARDIOPULMONARY; 36.3% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42032859" target="_blank">The evolution of the aneurysm clip: a century of innovation in vascular neurosurgery.</a></b> Coggins WS, Sasaki-Adams D, Pait TG, <i>British journal of neurosurgery</i>. (84.2% CARDIOVASCULAR/CARDIOPULMONARY; 6.3% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42031752" target="_blank">Modeling early human heart development using an iPSC-based 3D bioprinted model of embryonic heart tube.</a></b> Jin L, Park C, Neelakantan S, Karnik S, Dey A, Fineman S, Nandwani R, Gil CJ, Hwang B, Cadena MA, Sridhar V, Wang J, Wu Y, Evans CJ, Li L, Rezapourdamanab S, Amoli MS, Tomov ML, Roeder RK, Avazmohammadi R, Dasi LP, Jo H, Weeks E, Bauser-Heaton HD, Wu SM, Serpooshan V, <i>Nature communications</i>. (67.1% CARDIOVASCULAR/CARDIOPULMONARY; 12.8% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42028886" target="_blank">Engineered Development: Directed Morphogenesis of an Embryonic Heart Tube.</a></b> Gershlak JR, Miki K, Goraya SA, Nezami FR, Ott HC, <i>Advanced materials (Deerfield Beach, Fla.)</i>. (55.3% CARDIOVASCULAR/CARDIOPULMONARY; 26.0% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42035574" target="_blank">Hemodynamic and pathological Effects of aortic occlusion during Resuscitation: An ex vivo circulatory platform and in vivo animal study.</a></b> Li Z, Liu L, Gao F, Chen Y, Bai T, Jiang W, Chen C, Zhang M, <i>Journal of biomechanics</i>. (96.5% CARDIOVASCULAR/CARDIOPULMONARY; 0.8% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42025229" target="_blank">Mechanobiology of cardiac regeneration.</a></b> Majid T, Eroglu E, <i>Current opinion in genetics &amp;amp; development</i>. (85.6% CARDIOVASCULAR/CARDIOPULMONARY; 5.2% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42041274" target="_blank">Biomechanical Phenotyping of Forced Expiration for Precision Pulmonary Rehabilitation: A Machine Learning Approach to Identify Structural and Kinetic Drivers.</a></b> Sangkarit N, Tapanya W, <i>Advances in respiratory medicine</i>. (33.4% CARDIOVASCULAR/CARDIOPULMONARY; 24.9% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42044548" target="_blank">MRI-based two-way fluid-structure interaction simulation for discriminating symptomatic carotid atherosclerosis.</a></b> Fu J, Li L, Guo J, Zhang X, Zhu C, Chen D, Yu W, <i>Computer methods and programs in biomedicine</i>. (92.4% CARDIOVASCULAR/CARDIOPULMONARY; 5.5% MODELING)<br />
<br />
<br />
<span style="font-size:16px"><b>*CELLULAR*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42058163" target="_blank">Tumor microenvironment and mechanotransduction pathways: Novel targets and new directions for cancer therapy.</a></b> Zhang X, Sun J, Li Z, Wang S, <i>Mechanobiology in medicine</i>. (94.6% CELLULAR/SUBCELLULAR; 4.4% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42044154" target="_blank">Diversity in emergent cell locomotion from the coupling cytosolic and cortical Marangoni flows with reaction-diffusion dynamics.</a></b> Iv&#353;i&#263; B, Vuli&#263; D, Weber I, Nowakowski P, Smith AS, <i>PLoS computational biology</i>. (97.2% CELLULAR/SUBCELLULAR; 0.5% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42037402" target="_blank">c-di-GMP-mediated pause behavior enables Pseudomonas aeruginosa navigation in porous environments.</a></b> Zhang Z, Zhang R, Yuan J, <i>Applied and environmental microbiology</i>. (91.0% CELLULAR/SUBCELLULAR; 2.5% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42033548" target="_blank">Mechanobiology of non-small cell lung cancer: bridging tumor mechanics and therapeutic strategies.</a></b> Joshi RD, Patil DN, Yadav KS, <i>Molecular biology reports</i>. (92.0% CELLULAR/SUBCELLULAR; 6.2% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42030397" target="_blank">Directional guidance to orient Schwann cell alignment in nerve regeneration requires Plexin-B1.</a></b> Li J, Ni H, Halawani D, Estill M, Ramakrishnan A, Alves CJ, Shen L, He X, Friedel RH, Zou H, <i>Science advances</i>. (42.8% CELLULAR/SUBCELLULAR; 40.9% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42025989" target="_blank">Engineering the mechano-biological properties of ZnxFe3-xO4 nanoparticles for enhanced stiffness-associated magneto-mechanical therapeutic performance.</a></b> Osuagwu OI, Yang F, Yang Y, Al-Madani H, Bai S, Peng H, Wu A, <i>Acta biomaterialia</i>. (61.0% CELLULAR/SUBCELLULAR; 29.3% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42039650" target="_blank">A drug repurposing screen reveals dopamine signaling as a candidate therapeutic pathway for PIGA-CDG.</a></b> Aziz MC, Wilson J, Chow CY, <i>bioRxiv : the preprint server for biology</i>. (32.1% CELLULAR/SUBCELLULAR; 23.3% VISUAL/VESTIBULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42041902" target="_blank">Biological Consequences of Single and Combined Exposure to Magnetite-Chitosan Nanocomposite with Adsorbed Cobalt (II) in Danio rerio.</a></b> &#352;em&#269;uk S, Montvydien&#279; D, Butrimien&#279; R, Bradauskait&#279; A, Lujanien&#279; G, Talaikis M, Ma&#382;eika K, Pak&#353;tas V, Lazutka J, Jurgel&#279;n&#279; &#381;, <i>Biology</i>. (45.6% CELLULAR/SUBCELLULAR; 14.0% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42057835" target="_blank">Osteosarcoma pulmonary metastasis: the hemodynamic mechanical-filtration hypothesis for subpleural predominance.</a></b> Zhang K, <i>Frontiers in oncology</i>. (94.9% CELLULAR/SUBCELLULAR; 1.5% CARDIOVASCULAR/CARDIOPULMONARY)<br />
<br />
<br />
<span style="font-size:16px"><b>*COMPARATIVE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42054367" target="_blank">The allometry of vertebrate pursuit predation.</a></b> Koopmans L, de Roos AM, Martin BT, <i>Proceedings of the National Academy of Sciences of the United States of America</i>. (75.2% COMPARATIVE; 14.8% EVOLUTION/ANTHROPOLOGY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42049230" target="_blank">Developmental polyphenism shapes juvenile behaviours and glucocorticoid regulation in spadefoot toads.</a></b> Nesta DJ, Millar KW, Woods DL, Castro-Sauer L, Led&amp;oacute;n-Rettig CC, <i>Proceedings. Biological sciences</i>. (71.9% COMPARATIVE; 23.2% EVOLUTION/ANTHROPOLOGY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42049223" target="_blank">Seasonal shifts in muskox metabolic rates and energy expenditure are primarily governed by ambient temperature.</a></b> Schmidt NM, Hansen LH, Gr&amp;oslash;ndahl C, Tahas S, Bertelsen MF, Fohringer C, Leonard A, van Beest FM, <i>Proceedings. Biological sciences</i>. (79.0% COMPARATIVE; 12.6% EVOLUTION/ANTHROPOLOGY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42047850" target="_blank">Behavioral disruption in honey bees (Apis mellifera) exposed to isolated and combined insecticides.</a></b> Graeff-Filho VL, Costa-Schmidt LE, Idalgo SR, Diehl F, Iserhard CA, <i>Ecotoxicology (London, England)</i>. (87.9% COMPARATIVE; 3.1% EVOLUTION/ANTHROPOLOGY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42036307" target="_blank">Quantitative muscle architecture in large carnivorous marsupials (Marsupialia: Dasyuridae) and links to substrate use and prey processing.</a></b> Bidaye RG, Frenkel SH, Hocking DP, Evans AR, Adams JW, <i>Anatomical record (Hoboken, N.J. : 2007)</i>. (48.7% COMPARATIVE; 41.5% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42032839" target="_blank">Gut microbiota is associated with circadian rhythms and clock gene expression in honeybees.</a></b> Wang Y, Wang X, Zheng H, Li Y, <i>Insect science</i>. (77.4% COMPARATIVE; 6.1% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42029764" target="_blank">Feeding and light cycle disruptions have distinct effects on energy balance and neuroendocrine regulators in goldfish.</a></b> Saiz N, Isorna E, Herrera-Castillo L, Delgado MJ, Ruiz-Jarabo I, de Pedro N, <i>Fish physiology and biochemistry</i>. (71.1% COMPARATIVE; 14.2% VETERINARY/AGRICULTURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42038470" target="_blank">Osteological differences in the humerus of loggerhead and green turtles.</a></b> Park IK, Yoon S, Lee HR, Kim YJ, Noh HJ, Hong SH, Kim MS, Yang D, Kim IH, <i>PeerJ</i>. (83.4% COMPARATIVE; 7.0% EVOLUTION/ANTHROPOLOGY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42025234" target="_blank">Ternary lithium-ion battery cathode material NCM523 impairs planarian locomotor activity, growth and regeneration.</a></b> Chen Z, Deng Y, Li Y, Wu L, Zheng S, Wang Z, Chen S, Ren Y, Zhang Y, Tang S, Wang Z, Ou Z, <i>Aquatic toxicology (Amsterdam, Netherlands)</i>. (45.6% COMPARATIVE; 9.4% BOTANY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42040855" target="_blank">ENHYDROSS: A New Mechanistic Model Supports the Trans-Oceanic Dispersal Capability of Terrestrial Vertebrates.</a></b> Pantelides A, Upchurch P, Mannion PD, Gravanis E, Henderson DM, Kyriakidis P, <i>Ecology and evolution</i>. (57.1% COMPARATIVE; 37.4% EVOLUTION/ANTHROPOLOGY)<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/42057071" target="_blank">Effect of framework material and gyroid lattice design on the biomechanics of all-on-four full-arch prostheses.</a></b> Yi&#287;it E, &amp;Ouml;zcan N, &#350;ahin V, <i>BMC oral health</i>. (70.2% DENTAL/ORAL/FACIAL; 23.9% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42058523" target="_blank">AI and 3D printing-assisted surgical exposure of impacted canines and tooth extraction in complex cleft lip and palate orthodontic treatment.</a></b> Hoang V, Khoi BH, Chantarapanich N, Phuoc TH, Marya A, <i>Journal of surgical case reports</i>. (92.2% DENTAL/ORAL/FACIAL; 4.1% VETERINARY/AGRICULTURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42050564" target="_blank">Combined use of clear aligners and mini-screws for intrusion of the maxillary first and second molars before prosthetic restoration: a finite element analysis.</a></b> Wang S, Huang Y, Yang L, Li G, Yuan C, Liu H, Wang P, <i>BMC oral health</i>. (98.7% DENTAL/ORAL/FACIAL; 0.5% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42048972" target="_blank">Effect of Intracapsular Pressure on Pulp Sensitivity in Teeth Affected by Jaw Cysts: A Clinical Study Combined With Finite Element Analysis.</a></b> Zhou W, Mao C, Lin Y, Lu M, Lai Y, Wang C, Chen W, <i>International dental journal</i>. (97.7% DENTAL/ORAL/FACIAL; 0.4% VETERINARY/AGRICULTURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42045386" target="_blank">Biomechanical evaluation of 3D-printed porous lattice versus solid mandibular implants: an in vitro study.</a></b> Zhang H, Hsu JT, Fuh LJ, Huang HL, <i>Scientific reports</i>. (97.0% DENTAL/ORAL/FACIAL; 0.8% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42041090" target="_blank">Geometrically simplified 3D finite element modeling of a smooth dental implant: materials influence across different bone types.</a></b> Ghouari L, Naili T, Benatmane C, Messai H, Bouzida Y, <i>Computer methods in biomechanics and biomedical engineering</i>. (95.9% DENTAL/ORAL/FACIAL; 2.2% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42046663" target="_blank">Comprehensive Numerical and Experimental Investigations on Endolaryngeal Mobilization.</a></b> Cai W, Wilson A, He G, Hary E, Tkac I, Misono S, Sayce L, Li Z, <i>Laryngoscope investigative otolaryngology</i>. (72.9% DENTAL/ORAL/FACIAL; 16.6% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42044868" target="_blank">Comparison of three different internal fixation modalities for unilateral mandibular body fractures: A 3D finite element analysis.</a></b> Yang H, Chen T, Zhang Q, Wang C, Xie F, Hou J, <i>Journal of stomatology, oral and maxillofacial surgery</i>. (96.6% DENTAL/ORAL/FACIAL; 0.8% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42037349" target="_blank">Research progress on three-dimensional finite element analysis for fixed implant restoration of edentulous jaw.</a></b> Lan Y, Su B, <i>Sheng wu yi xue gong cheng xue za zhi = Journal of biomedical engineering = Shengwu yixue gongchengxue zazhi</i>. (97.0% DENTAL/ORAL/FACIAL; 1.2% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42033735" target="_blank">Orthodontic Airway Plate Therapy for Infants with Robin Sequence: Clinical Principles, Current Evidence, and Evolving Innovations.</a></b> Lee MS, Guelmann M, Sheller B, <i>Neonatology</i>. (92.3% DENTAL/ORAL/FACIAL; 1.5% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42032875" target="_blank">Implications of the Tongue's Anatomy and Biomechanics for Breastfeeding.</a></b> Gu&amp;oacute;th-Gumberger M, Zoeggeler T, Bachmann M, Margreitter J, Karall D, <i>Acta paediatrica (Oslo, Norway : 1992)</i>. (66.9% DENTAL/ORAL/FACIAL; 8.8% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42032041" target="_blank">Biomechanical effect of implant thickness and screw diameter on CFR-PEEK subperiosteal implants: a three-dimensional finite element analysis.</a></b> Etik E, Keskin Yalcin B, <i>Scientific reports</i>. (94.5% DENTAL/ORAL/FACIAL; 1.5% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42028979" target="_blank">Optimizing Maxillary Anterior Teeth Intrusion in Clear Aligner Therapy: A Finite Element Analysis of Attachment Efficacy.</a></b> Shah C, Batra P, Vaiid N, <i>Orthodontics &amp;amp; craniofacial research</i>. (99.4% DENTAL/ORAL/FACIAL; 0.1% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42027858" target="_blank">Management of Severely Reduced Interimplant Distance Using a Novel Eccentric Abutment: A 6-Year Case Report Featuring Digital Quantification of Implant Spacing.</a></b> Schwarz DM, Taveras JMP, Szmukler-Moncler S, Atay E, Beuer F, <i>Case reports in dentistry</i>. (98.4% DENTAL/ORAL/FACIAL; 0.5% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42035460" target="_blank">Effect of Suturing and Adhesive Fixation on Free Gingival Graft Stability: An Ex-Vivo Porcine-Model Study.</a></b> Agossa K, Kalani K, Hazrati P, Chen CF, Tsai CL, Chele D, Alrmali AE, Wang HL, <i>Clinical and experimental dental research</i>. (94.8% DENTAL/ORAL/FACIAL; 1.6% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42041650" target="_blank">Clear Aligner Extraction Treatment with Caterpillar Motion Staging: Biomechanical Rationale, Clinical Protocol, and Report of Two Cases.</a></b> Martinez-Lozano D, Rivero-Mourelle C, L&amp;oacute;pez-Jim&amp;eacute;nez AJ, <i>Dentistry journal</i>. (97.8% DENTAL/ORAL/FACIAL; 0.3% ORTHOPAEDICS/SPINE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42037966" target="_blank">Comparative Evaluation of Fracture Resistance in Endodontically Treated Posterior Teeth Restored With Endocrowns Versus Conventional Post and Core Followed by a Full Crown: An In Vitro Study.</a></b> Gadhe MM, Mehmood N, Mukherjee M, Pathak K, Gagroo UU, Mone A, Gupta S, <i>Cureus</i>. (98.0% DENTAL/ORAL/FACIAL; 0.4% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42058981" target="_blank">Biomechanical analysis of skeletal open bite treatment methods: a comparative finite element study.</a></b> Sari &amp;Ouml;F, B&amp;uuml;y&amp;uuml;k&amp;ccedil;avu&#351; MH, <i>Turkish journal of medical sciences</i>. (97.6% DENTAL/ORAL/FACIAL; 0.6% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42038184" target="_blank">The Interaction Between Orthodontics and Periodontal Tissue Remodeling :</a></b> Abasi M, Goodarzi A, Solhmirzaei R, Fazel F, Moharrami A, Ghasemi H, Alavi Milani H, <i>Galen medical journal</i>. (98.5% DENTAL/ORAL/FACIAL; 0.4% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42038905" target="_blank">Radiographic Evaluation of Implant Stability and Osseointegration in Adult Orthodontic Patients : Radiographic Evaluation of Implant Stability and Osseointegration.</a></b> Rostamzadeh S, Ghasemirad M, Gerayeli M, Abasi M, Pouresmaeliyan Roumani M, Ganjehzadeh S, Moharrami A, <i>Galen medical journal</i>. (97.9% DENTAL/ORAL/FACIAL; 0.4% BONE)<br />
<br />
<br />
<span style="font-size:16px"><b>*ERGONOMICS*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42056950" target="_blank">Prevalence and predictors of self-reported multimorbidity and locomotor disability among the geriatric population in coastal South Karnataka, India.</a></b> Alok Y, U L, Mahajan R, Kulkarni MM, Kamath A, Y K, Bhat S, Sharma P, Shetty RS, <i>BMC geriatrics</i>. (47.6% ERGONOMICS; 21.9% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42056340" target="_blank">Effects of white cane handle angle and technique on upper limb biomechanics and comfort in visually impaired users.</a></b> Rasouli Kahaki Z, Choobineh A, Razeghi M, Ghaem H, Salehi M, Jahangiri H, Daneshmandi H, <i>Scientific reports</i>. (50.3% ERGONOMICS; 36.3% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42044719" target="_blank">The Effect of Ergonomic Optimization on Shoulder and Neck Mechanics and Symptoms during Simulated Ureteroscopy.</a></b> Saini G, Sloan MS, Borofsky MS, Ganesan V, Ludewig PM, Agarwal DK, <i>Urology</i>. (98.7% ERGONOMICS; 0.3% ORTHOPAEDICS/SPINE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42035625" target="_blank">Evaluation of the subjective and objective benefits of occupational soft and rigid back support exoskeletons in simulated automotive assembly tasks.</a></b> Kazemi Z, Srinivasan D, <i>Applied ergonomics</i>. (89.4% ERGONOMICS; 5.2% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42025011" target="_blank">Association of life-course stressful life events with later-life intrinsic capacity: A multi-cohort study.</a></b> Zhou Y, Si Y, Carrillo-Larco RM, Zhang Y, Xu X, <i>The journal of nutrition, health &amp;amp; aging</i>. (24.3% ERGONOMICS; 10.2% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42034074" target="_blank">Biomechanics of manual wheeled propulsion in children and adolescents with neuromuscular disorders: A scoping review.</a></b> Lewis J, Rowan M, Parrett M, Leonardis J, Russo S, Tulchin-Francis K, <i>Clinical biomechanics (Bristol, Avon)</i>. (72.2% ERGONOMICS; 14.2% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42030716" target="_blank">Patients' perceptions of the causes and treatments for rotator cuff-related shoulder pain: a content analysis of patient responses and implications for clinician communication.</a></b> Wong E, Ferreira G, Muller RD, Sousa F, Malliaras P, West CA, O'Keeffe M, Bejarano G, O'Neill H, Maher CG, Zadro JR, <i>Musculoskeletal science &amp;amp; practice</i>. (41.0% ERGONOMICS; 25.5% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42043083" target="_blank">Beyond the Neutral Spine: A Narrative Review and Modern Framework for Low Back Injury Prevention in Deadlifting.</a></b> Cherni B, Marzouki H, Selmi O, Attar WA, Chamari K, Suzuki K, <i>Sports (Basel, Switzerland)</i>. (62.9% ERGONOMICS; 21.4% SPORT/EXERCISE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42039003" target="_blank">Viola ergonomics for thriving and health promotion: the influence of an instrument's dimensions, positioning, and biomechanics on muscular effort.</a></b> Margulies O, Faller M, N&amp;uuml;bling M, Avery J, Verheul W, Hildebrandt W, Hildebrandt H, <i>Frontiers in psychology</i>. (99.3% ERGONOMICS; 0.4% SPORT/EXERCISE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42037808" target="_blank">Unexpected Ipsilateral Pedicle Fracture in Nontraumatic Lumbar Spondylolysis: An Uncommon Case.</a></b> Takahashi R, Hayashi K, Misaki K, Mizuno K, <i>Cureus</i>. (62.5% ERGONOMICS; 25.1% ORTHOPAEDICS/SPINE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42029499" target="_blank">Shoulder Complex Dysfunction Through an Evolutionary Lens: The Need for Closed Kinetic Chain Loading in Upper Extremity Program Design.</a></b> Luedeka D, Strick K, Roche N, Williams C, <i>Journal of functional morphology and kinesiology</i>. (42.0% ERGONOMICS; 20.5% REHABILITATION)<br />
<br />
<br />
<span style="font-size:16px"><b>*EVOLUTION/ANTHROPOLOGY*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42059141" target="_blank">Oldest well-preserved euprimate petrosal, from the early Eocene of India (Vastan Lignite Mine, Gujarat).</a></b> Silcox MT, Rose KD, Dunn RH, Kumar K, Rana RS, Sahni A, Singh L, Smith T, Crowell JW, <i>Anatomical record (Hoboken, N.J. : 2007)</i>. (75.5% EVOLUTION/ANTHROPOLOGY; 15.7% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42056363" target="_blank">Spontaneous cephalic oscillations in vertebrate embryos support the Inside Story scenario of human development and evolution.</a></b> Fleury V, <i>Scientific reports</i>. (65.9% EVOLUTION/ANTHROPOLOGY; 18.5% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42056127" target="_blank">Heterochronic activation of TGF-&#946; signaling drives the diversity of the avian sterna.</a></b> Kwon SJ, Zou Z, Honda M, Egawa S, Oki S, Atsuta Y, <i>Nature communications</i>. (56.9% EVOLUTION/ANTHROPOLOGY; 33.8% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42049250" target="_blank">Heavy metal predators: diverse elemental enrichment across the weapons of scorpions.</a></b> Campbell SID, Vicenzi EP, Lam T, Fry BG, Wood HM, <i>Journal of the Royal Society, Interface</i>. (51.4% EVOLUTION/ANTHROPOLOGY; 45.1% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42049221" target="_blank">Scaling and foraging behaviour drive the evolution of humeral shape in hummingbirds.</a></b> R&amp;iacute;os-Orjuela JC, Cadena CD, Rico-Guevara A, Berberi I, Miner L, Dakin R, <i>Proceedings. Biological sciences</i>. (87.6% EVOLUTION/ANTHROPOLOGY; 9.7% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42026754" target="_blank">Microanatomical features of bovids long bones: What are the effects of mass and habitat?</a></b> Proust M, Etienne C, Houssaye A, <i>Journal of anatomy</i>. (35.4% EVOLUTION/ANTHROPOLOGY; 27.3% COMPARATIVE)<br />
<br />
<br />
<span style="font-size:16px"><b>*GAIT/LOCOMOTION*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42059157" target="_blank">Kinetic Interlimb Asymmetries in Loading and Propulsion During Walking From 2 to 8 Months After Anterior Cruciate Ligament Reconstruction.</a></b> Brebels R, Bastien GJ, Dandois F, Schepens B, Penta M, <i>Journal of orthopaedic research : official publication of the Orthopaedic Research Society</i>. (65.2% GAIT/LOCOMOTION; 22.6% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42060696" target="_blank">The cost of dual-task walking: Cognitive demands restrict gaze behaviour and gait planning.</a></b> Russo Y, Ye J, Lamb SE, Gear A, Lyon W, Qiu J, Banks M, Martin E, Wang Z, Alghamdi M, Leveridge P, Young WR, <i>PloS one</i>. (95.2% GAIT/LOCOMOTION; 1.1% VISUAL/VESTIBULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42059864" target="_blank">Walking speed does not modulate electrocortical alpha response to intermittent visual occlusions.</a></b> Morris JR, Cruz K, Kainth R, Ferris DP, <i>Journal of neurophysiology</i>. (44.0% VISUAL/VESTIBULAR; 43.7% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42054559" target="_blank">Age-Related Differences in Joint Kinematics and Spatiotemporal Parameters During Ramp Walking and Level Walking: Cross-Sectional Study.</a></b> Shimotori D, Fujisawa S, Nishimura M, Yoshimi T, Kato K, <i>JMIR biomedical engineering</i>. (97.8% GAIT/LOCOMOTION; 0.5% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42048216" target="_blank">Teleportation with Reorientation for Redirected Walking in VR.</a></b> Hung HC, Chuang JH, <i>IEEE transactions on visualization and computer graphics</i>. (33.3% GAIT/LOCOMOTION; 24.2% ROBOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42044133" target="_blank">Gait kinematics and kinetics in patients with different grades of meniscus injury: A cross-sectional study.</a></b> Lan X, Li Y, Gao J, Xu Y, Su Q, Xu P, Chen J, Lin Z, Jiang C, <i>PloS one</i>. (47.3% GAIT/LOCOMOTION; 32.4% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42044003" target="_blank">Reducing the physical effort of wearing a walking boot using a passive hip exosuit through enforced exploration training.</a></b> Sanz-Pena I, Sullivan S, Kantharaju P, Yang J, Arachchige DK, Lee G, Kim M, <i>IEEE transactions on bio-medical engineering</i>. (60.8% GAIT/LOCOMOTION; 20.4% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42034348" target="_blank">Effects of Center of Pressure Processing on Gait Biomechanics in People With Chronic Ankle Instability: A Technical Report.</a></b> Migel KG, Gross MT, Blackburn JT, Pietrosimone B, Thoma L, Wikstrom E, <i>Journal of sport rehabilitation</i>. (69.0% GAIT/LOCOMOTION; 20.8% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42030763" target="_blank">Ageing alters ankle mechanics and muscle co-contraction patterns across the gait cycle.</a></b> Lindsay C, Radcliffe CR, Immink MA, <i>Gait &amp;amp; posture</i>. (50.1% GAIT/LOCOMOTION; 23.0% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42030613" target="_blank">The association of objective gait measures with patient-reported outcome measures and physical performance following total knee arthroplasty: A systematic review.</a></b> Hopkins C, Herrmann K, Vette AH, Michael Goplen C, Beaupre L, <i>The Knee</i>. (72.1% GAIT/LOCOMOTION; 16.3% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42054723" target="_blank">Multi-modal sensor fusion in smart footwear to capture altered gait dynamics in patients with diabetic peripheral neuropathy: System validation and clinical applications.</a></b> Wang X, Xie A, Zhang J, Huang J, Geng X, Zhao W, Yin J, Ma X, Chen WM, <i>Gait &amp;amp; posture</i>. (47.6% GAIT/LOCOMOTION; 25.2% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42025002" target="_blank">Factors that contribute to collision avoidance behaviours involving a single pedestrian versus a group of pedestrians in a natural environment.</a></b> Nikmanesh M, Cinelli ME, Marigold DS, <i>Human movement science</i>. (68.9% GAIT/LOCOMOTION; 5.5% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42048981" target="_blank">Systematic review of kinematic and kinetic parameters in Parkinson's disease, with and without freezing of gait.</a></b> Ball L, Khobkhun F, Richards J, Davison G, Bowd J, <i>Clinical biomechanics (Bristol, Avon)</i>. (91.4% GAIT/LOCOMOTION; 4.7% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42034001" target="_blank">Musculotendinous morphological differences and their relationship with walking biomechanics in children with and without Sever disease.</a></b> Cardiel-S&amp;aacute;nchez S, Rubio-Peirot&amp;eacute;n A, Bravo-Vi&amp;ntilde;uales E, R&amp;aacute;fales-Perucha A, Cart&amp;oacute;n-Llorente A, Garc&amp;iacute;a-Pinillos F, <i>Gait &amp;amp; posture</i>. (95.3% GAIT/LOCOMOTION; 1.9% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42041836" target="_blank">Influence of Different Arm Movement Strategies on Subjective Task-Related Perceptions and Walking Outcomes Under Single- and Dual-Task Conditions in Healthy Children Compared to Young Adults.</a></b> Borgmann K, Schebeck M, Greiwe L, Lambrich J, Hill MW, Muehlbauer T, <i>Brain sciences</i>. (89.8% GAIT/LOCOMOTION; 2.5% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42025425" target="_blank">Attenuated intersegmental cancellation compromises whole-body angular momentum control during perturbed locomotion.</a></b> Nikolaidou ME, Theodorakis C, Mademli L, Mersmann F, Bohm S, Arampatzis A, <i>Journal of biomechanics</i>. (96.7% GAIT/LOCOMOTION; 0.6% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42041490" target="_blank">Can Non-Translational Simplified Tasks Mimic Knee Kinematics During Gait? A Comparative Study of Tibiofemoral ICR Trajectories.</a></b> Valencia F, Nadal F, Prado-Novoa M, <i>Biomimetics (Basel, Switzerland)</i>. (68.9% GAIT/LOCOMOTION; 11.3% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42041795" target="_blank">Two-Dimensional Sagittal-Plane Gait Evaluation and Similarity Analysis in Parkinson's Disease Under ON and OFF Conditions: A Pilot Study.</a></b> Mendoza-Mart&amp;iacute;nez J, Jim&amp;eacute;nez-Ponce F, Silva-Garc&amp;eacute;s KN, M&amp;eacute;ndez Garc&amp;iacute;a SR, Casarez Duran AA, Torres-SanMiguel CR, <i>Brain sciences</i>. (92.9% GAIT/LOCOMOTION; 1.7% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42029505" target="_blank">Altered Spatiotemporal and Kinematic Gait in Patients with Knee Osteoarthritis.</a></b> Suttanon P, Saelee P, Apibantaweesakul S, <i>Journal of functional morphology and kinesiology</i>. (91.0% GAIT/LOCOMOTION; 4.0% REHABILITATION)<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/42052407" target="_blank">The Effect of Retrograde Intramedullary Nail Entry at the Metacarpal Head on Metacarpophalangeal Joint Contact Mechanics.</a></b> Hollenbeck JFM, Castro RR, Mukohara S, Perleberg TD, Viola RW, <i>Journal of hand surgery global online</i>. (61.1% HAND/FINGER/FOOT/TOE; 18.6% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42027749" target="_blank">Unilateral Incomplete Coalition of the Capitate, Trapezoid, and Trapezium with Trapezoid Fracture.</a></b> Dalal N, Blitz B, Racki S, Pizzo D, Katt BM, Kirschenbaum D, <i>Journal of hand surgery global online</i>. (95.6% HAND/FINGER/FOOT/TOE; 2.0% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42055966" target="_blank">Lower Limb Symmetry Index in Cavus and Normal Feet by Means of a Baropodometric Platform: A Case-Control Study.</a></b> Mart&amp;iacute;nez-Salvador L, Silva-Migueis H, Becerro-de-Bengoa-Vallejo R, Losa-Iglesias ME, Bayod-L&amp;oacute;pez J, Casado-Hern&amp;aacute;ndez I, G&amp;oacute;mez-Salgado J, Garc&amp;iacute;a-Carrillo N, L&amp;oacute;pez-L&amp;oacute;pez D, <i>International wound journal</i>. (92.9% HAND/FINGER/FOOT/TOE; 4.2% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42028062" target="_blank">Plastic Deformation of the Pediatric Forearm: Recognition, Radiographic Measurement, and Management.</a></b> Wetzel C, Rohl M, Manes T, Kadado A, <i>Journal of the Pediatric Orthopaedic Society of North America</i>. (81.5% HAND/FINGER/FOOT/TOE; 9.8% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42047643" target="_blank">Decreased Radial Inclination Without Dorsal Angulation Attenuates the Biomechanical Effects of Ulnar Abutment Syndrome: A Finite Element Analysis.</a></b> Suzuki T, Matsuura Y, Yamazaki T, Hojo A, Ohtori S, <i>The Journal of hand surgery</i>. (75.1% HAND/FINGER/FOOT/TOE; 7.9% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42036552" target="_blank">Scaphoid waist fractures in the presence of carpal coalitions: a consistent biomechanical weak point?</a></b> Schmitt S, Winterholer D, Fritsche E, <i>Archives of orthopaedic and trauma surgery</i>. (96.5% HAND/FINGER/FOOT/TOE; 2.2% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42035907" target="_blank">Beyond the Foot: Proximal Joint Adaptations Following Lisfranc Injury as Suggested by Gait and Pedobarographic Analysis.</a></b> Eceviz E, &amp;Ouml;zyaman O, Y&#305;lmaz H, Hekim &amp;Ouml;, G&amp;ouml;kmen O, Bilgehan &amp;Ccedil;evik H, <i>The Journal of foot and ankle surgery : official publication of the American College of Foot and Ankle Surgeons</i>. (94.4% HAND/FINGER/FOOT/TOE; 1.8% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42033431" target="_blank">Evaluation Value of Shear Wave Elastography and Blood Flow Parameters in Functional Recovery After Surgical Repair of Hand Flexor Tendon Laceration.</a></b> Xu Z, Du T, Zeng G, Zhang W, Chen M, Du X, Yu H, Zeng Y, Jin H, Li Z, Li J, <i>The Journal of hand surgery</i>. (75.8% HAND/FINGER/FOOT/TOE; 8.0% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42034150" target="_blank">How bending causes distal radius fracture: Evidence from 6dof load measurement and digital image correlation.</a></b> Robinson DL, Lee PVS, <i>Bone</i>. (41.9% HAND/FINGER/FOOT/TOE; 26.4% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42054873" target="_blank">Subtalar joint biomechanics in children with cerebral palsy with midfoot break: A pilot study.</a></b> Meilak E, Modenese L, Roberts AP, Stebbins J, Chadwick EK, Stewart C, <i>Clinical biomechanics (Bristol, Avon)</i>. (95.7% HAND/FINGER/FOOT/TOE; 1.2% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42027408" target="_blank">Short-term Outcomes of Percutaneous Zadek Osteotomy for Insertional Achilles Tendinopathy in Cavus vs Non-Cavus Feet: A Comparative Multi-Center Study.</a></b> Lewis TL, Fletcher L, Watt C, Ray R, Ko&amp;ccedil; T, Newton AC, Ferraz Ferreira G, Gonzalez TA, Lam P, <i>Foot &amp;amp; ankle orthopaedics</i>. (77.1% HAND/FINGER/FOOT/TOE; 12.0% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42029992" target="_blank">Comprehensive Management of Diabetic Foot Ulcers: Current Evidence and Practice.</a></b> Kim JM, Kang SM, Jung JH, Kim KC, Ahn S, Kim CH, Park TS, Park IB, <i>Journal of diabetes</i>. (81.4% HAND/FINGER/FOOT/TOE; 2.9% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42042533" target="_blank">The Immediate Effect of KINESIO TAPE&amp;reg; on Static Plantar Foot Pressure and Force in Young Females with Flexible Flatfoot: A Pilot Study.</a></b> Ameer M, Al Abbad A, Alruwaili A, Alruwaili G, Alshammari W, Alruwaili F, Alhabbad S, Kamel M, <i>Journal of the American Podiatric Medical Association</i>. (98.1% HAND/FINGER/FOOT/TOE; 0.5% PROSTHETICS/ORTHOTICS)<br />
<br />
<br />
<span style="font-size:16px"><b>*JOINT/CARTILAGE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42059942" target="_blank">Assessment of a new technique for biological augmentation in sternoclavicular joint dislocations: a cadaveric feasibility and biomechanical evaluation.</a></b> Somberg O, F&amp;ouml;rster E, Rosteius T, Bernstorff M, Schildhauer T, K&amp;ouml;nigshausen M, <i>European journal of trauma and emergency surgery : official publication of the European Trauma Society</i>. (43.8% JOINT/CARTILAGE; 39.1% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42059084" target="_blank">Mechanical axis correction after total knee arthroplasty alters ankle alignment but does not affect ankle function.</a></b> Portes-Chiva A, Soria-Bl&amp;aacute;zquez A, Hinarejos P, Torres-Claramunt R, Perelli S, S&amp;aacute;nchez-Soler JF, Gin&amp;eacute;s-Cespedosa A, Monllau JC, <i>Knee surgery, sports traumatology, arthroscopy : official journal of the ESSKA</i>. (52.0% JOINT/CARTILAGE; 21.7% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42036991" target="_blank">Therapeutic Targets and Signaling Mechanisms in 2D and 3D In Vitro Models of Osteoarthritis.</a></b> Suresh D, Raja K, Eid A, Pritishkumar IJ, Nau T, Naidoo N, <i>Clinical anatomy (New York, N.Y.)</i>. (90.5% JOINT/CARTILAGE; 4.5% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42034866" target="_blank">From Biomechanics to Metallobiology: A Bibliometric Mapping of Ferroptosis and Trace Elements in Osteoarthritis (2014-2024).</a></b> Qin TH, Abd Halim NFA, Azman AA, Mao L, Atheeqah-Hamzah N, Alamassi M, Liu X, Huang J, Selvaratnam V, Aziz A, Kamarul T, <i>Biological trace element research</i>. (70.0% JOINT/CARTILAGE; 10.7% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42036086" target="_blank">Divergent Dynamics: Unicompartmental Knee Arthroplasty Enables Greater Propulsive Joint Moments Compared To Total Knee Arthroplasty.</a></b> Kuntze G, Korley R, Abelseth G, Ronsky J, Johnston K, <i>The Journal of arthroplasty</i>. (62.4% JOINT/CARTILAGE; 17.9% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42032660" target="_blank">Meniscal centralization restores meniscus-cartilage contact mechanics after posterior root repair: a biomechanical in-silico study.</a></b> Zhou Y, Lu Q, Xu J, Jia L, Wu C, Yang Q, Li J, <i>Journal of orthopaedic surgery and research</i>. (75.6% JOINT/CARTILAGE; 10.0% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42028630" target="_blank">Anatomy changes, signalling pathways, and clinical treatment after ankle sprain.</a></b> Wang J, Chen J, Zhao Y, Peng M, Liu W, Zhang L, <i>Bone &amp;amp; joint research</i>. (38.6% JOINT/CARTILAGE; 26.5% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42030858" target="_blank">Liposome-based nanocolloids for restoring lubrication and targeted therapy in osteoarthritis.</a></b> Wang X, Fu Y, Lin W, <i>Colloids and surfaces. B, Biointerfaces</i>. (95.2% JOINT/CARTILAGE; 1.7% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42052295" target="_blank">Viscoelastic properties of sodium hyaluronate and their mathematical optimization in intra-articular injections: a predictive model for enhancing clinical efficacy.</a></b> Rivarola H, Guerrasio S, Trinchese L, Endara Urresta F, Rivarola B, <i>Frontiers in bioengineering and biotechnology</i>. (84.0% JOINT/CARTILAGE; 10.4% MODELING)<br />
<br />
<br />
<span style="font-size:16px"><b>*METHODS*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42060920" target="_blank">Participant-Aware Model Validation for Repeated-Measures Data: Comparative Cross-Validation Study.</a></b> Karbalaie A, Abtahi F, H&amp;auml;ger CK, <i>JMIR AI</i>. (85.3% METHODS; 8.6% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42053746" target="_blank">Application of upright multidetector CT in orthopedics and the musculoskeletal system: insights into anatomy, alignment, and biomechanics.</a></b> Yamada Y, Yamada M, Yokoyama Y, Kaneda K, Yoshida Y, Sasaki R, Seki H, Mizukoshi R, Yagi F, Matsumura N, Nozaki T, Nagura T, Nakamura M, Jinzaki M, <i>Japanese journal of radiology</i>. (46.4% METHODS; 12.1% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42058884" target="_blank">Harnessing mmWave signals and machine learning for noninvasive taxonomic classification of insects.</a></b> Antony L, White C, Marchetti N, Donohue I, Stout JC, Narbudowicz A, <i>PNAS nexus</i>. (61.9% METHODS; 22.9% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42046330" target="_blank">A statistical shape model of the human female sacrum: An integrative analysis of form.</a></b> Van Hauwermeiren L, Audenaert E, Van Houcke J, Matthews H, Claes P, Delrue L, Achten E, Adriaens D, Van Hoof T, <i>Journal of anatomy</i>. (36.4% EVOLUTION/ANTHROPOLOGY; 31.1% MODELING)&#8203;<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42049160" target="_blank">Cutoff value and optimal age discrimination thresholds of impaired intrinsic capacity in Chinese older adults: Based on the CHARLS database.</a></b> Yuan Q, Jia S, Yue X, Li Y, Wang M, Chen M, Pan J, Xia L, Mao Z, Ding X, Xu X, <i>Experimental gerontology</i>. (28.9% METHODS; 16.5% POSTURE/BALANCE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42028707" target="_blank">Nanointerface-Engineered Triboelectric Nanocomposite for Self-Powered Intelligent Motion Decoding.</a></b> Chen Z, Ji F, Zhu H, Tang H, Liu H, Han G, Xu Y, <i>ACS applied materials &amp;amp; interfaces</i>. (78.3% METHODS; 15.1% ROBOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42026106" target="_blank">DUSTrack: Semi-automated point tracking in ultrasound videos.</a></b> Namburi P, Pallar&amp;egrave;s-L&amp;oacute;pez R, Rosendorf J, Folgado D, Anthony BW, <i>Scientific reports</i>. (98.3% METHODS; 0.7% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42029530" target="_blank">A Movement Description Language for Functional Training Exercise Analysis.</a></b> Sousa L, Canedo D, Santos P, Neves A, <i>Journal of functional morphology and kinesiology</i>. (46.0% METHODS; 29.6% SPORT/EXERCISE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42051998" target="_blank">Physics-informed hierarchical transformer for wearable sensor-based gait fatigue assessment.</a></b> Ding K, Li Z, Zou X, Jia J, Li C, Jiang Z, <i>Frontiers in public health</i>. (64.8% METHODS; 26.8% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42042705" target="_blank">A Self-Powered and Highly Sensitive Flexible Contact-Pressure Sensor for Dynamic Sensing Based on Graphene-Enhanced Hydrogel.</a></b> Hu Z, Ren J, Wan L, Zhang L, Yang X, Lin T, <i>Nanomaterials (Basel, Switzerland)</i>. (90.6% METHODS; 4.2% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42040341" target="_blank">Translation of surface electromyography into a clinically applicable objective bulbar assessment tool to improve measurement-based care in amyotrophic laterals sclerosis.</a></b> Rong P, Heidrick L, Pattee G, <i>Frontiers in neuroscience</i>. (28.4% METHODS; 19.5% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42032113" target="_blank">Biochemical state in tissue can be detected through ultrasound signal.</a></b> Ito K, Iijima Y, Misumi T, Hayase G, Tamura K, Ikushima K, Yoshino D, <i>npj biomedical innovations</i>. (51.7% METHODS; 35.5% CELLULAR/SUBCELLULAR)<br />
<br />
<br />
<span style="font-size:16px"><b>*MODELING*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42044991" target="_blank">Boundary Conditions Affecting Finite Element Analyses of a Spinal Segment.</a></b> Cheng BC, <i>International journal of spine surgery</i>. (57.5% MODELING; 36.9% ORTHOPAEDICS/SPINE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42033501" target="_blank">Biologically Constrained Insect Models Enable Realistic Simulations and Improve Biomechanical Predictions of Locomotion.</a></b> Yuval O, Ozeri E, Amir A, Ayali A, <i>Soft robotics</i>. (79.4% MODELING; 8.5% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42033887" target="_blank">Healthy morphological variability in sagittal alignment modulates loading patterns in musculoskeletal spine modelling.</a></b> Borrelli S, Benna V, Putame G, Audenino AL, Terzini M, <i>Computers in biology and medicine</i>. (81.4% MODELING; 15.9% ORTHOPAEDICS/SPINE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42033971" target="_blank">Multimodal neural operators for real-time biomechanical modelling of traumatic brain injury.</a></b> Agarwal A, Sarkar DR, Goswami S, <i>Computer methods and programs in biomedicine</i>. (56.5% MODELING; 34.8% TRAUMA/IMPACT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42054848" target="_blank">Effects of bone deformation on patient-specific finite element predictions of hip chondrolabral mechanics.</a></b> Hudson LT, Vargas BL, Anderson AE, Weiss JA, <i>Journal of the mechanical behavior of biomedical materials</i>. (81.0% MODELING; 8.9% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42024963" target="_blank">Assessing the precision of 3D human model for forensic biomechanics application.</a></b> Nolette MA, Claridad S, Milner TE, Desmoulin GT, <i>Legal medicine (Tokyo, Japan)</i>. (61.5% MODELING; 23.3% TRAUMA/IMPACT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42047080" target="_blank">Von Mises stress analyses using finite element model in two patients with chronic low back pain.</a></b> Prasetya AIP, Winarni TI, Jamari J, Syahrom A, <i>Medicinski glasnik : official publication of the Medical Association of Zenica-Doboj Canton, Bosnia and Herzegovina</i>. (89.1% MODELING; 6.4% ORTHOPAEDICS/SPINE)<br />
<br />
<br />
<span style="font-size:16px"><b>*MUSCLE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42037324" target="_blank">Musculoskeletal biomechanical analysis of the three-dimensional gastrocnemius and soleus muscles.</a></b> Tang Z, Xu J, Jin Z, Li J, <i>Sheng wu yi xue gong cheng xue za zhi = Journal of biomedical engineering = Shengwu yixue gongchengxue zazhi</i>. (50.4% MUSCLE; 47.8% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42040515" target="_blank">Multimodal Assessment of Biomechanical and Neuromuscular Characteristics of Zygomaticus Major in Healthy Participants.</a></b> Garg R, Garg U, Khurana TS, Sung C, Levin LS, Vitale F, Milbar N, <i>Plastic and reconstructive surgery. Global open</i>. (66.5% MUSCLE; 19.6% DENTAL/ORAL/FACIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42029529" target="_blank">Electromyographic Activity of the Shoulder Muscles During Arm Elevation in Asymptomatic Subjects-A Cross-Sectional Study.</a></b> Barra-L&amp;oacute;pez ME, L&amp;oacute;pez-de-Celis C, Garcia-Ribell E, Rodr&amp;iacute;guez-Rodr&amp;iacute;guez S, Malo-Urri&amp;eacute;s M, Rodr&amp;iacute;guez-Sanz J, <i>Journal of functional morphology and kinesiology</i>. (66.6% MUSCLE; 18.1% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42051766" target="_blank">The role of muscle ultrasound in stroke rehabilitation: a review of calf muscle alterations and clinical implications.</a></b> Shi Y, Li C, <i>Frontiers in neurology</i>. (78.4% MUSCLE; 9.3% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42034034" target="_blank">Synergistic yet different: Rethinking the gastrocnemii as two functionally distinct muscles.</a></b> Aeles J, Hug F, <i>Journal of biomechanics</i>. (98.9% MUSCLE; 0.5% NEURAL)<br />
<br />
<br />
<span style="font-size:16px"><b>*NEURAL*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42057743" target="_blank">Neuro-reparative potential of hyperbaric oxygen therapy in animal models of Alzheimer's and Parkinson's diseases: systematic review and meta-analysis.</a></b> Radhakrishnan A, Dutta D, Saha M, Venkatakrishnan S, Kulkarni A, Chandrachari KP, Salins PC, Suresh A, <i>Neurodegenerative disease management</i>. (48.7% NEURAL; 17.3% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42050742" target="_blank">Women's reproductive life patterns, intrinsic capacity, and the risk of all-cause and cause-specific dementia: a prospective cohort study.</a></b> Zhang Y, Tan Q, Wu S, Xu X, <i>Alzheimer's research &amp;amp; therapy</i>. (21.8% NEURAL; 12.2% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42045188" target="_blank">Artificial plateau neurons with in-situ spike-malleability for rhythmic quadrupedal locomotion.</a></b> Wang H, Zhang Y, Chai Q, He Q, Hu J, Bai Y, Liu G, Li Z, Chai J, He X, Zhao M, Xue G, Liu K, Fu Y, Tang H, Xu Y, Yu B, <i>Nature communications</i>. (47.3% NEURAL; 37.0% ROBOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42051465" target="_blank">Identification of a Novel VLDLR Variant in the First Report of CAMRQ1 From Africa: Expanding the Spectrum of Cerebellar Ataxia Syndromes.</a></b> Jawabri AA, Salazar-Villacorta A, Senghor H, Ndiaye R, Al-Mehrzi A, Diop AG, Ndiaye M, Ali BR, Rodriguez Cruz PM, <i>Human mutation</i>. (35.5% NEURAL; 16.9% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42043580" target="_blank">Bidirectional modulation of soleus spinal excitability induced by upper limb movement practice.</a></b> Doshi A, Handa A, Kesar T, Madhavan S, <i>Experimental brain research</i>. (80.0% NEURAL; 6.1% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42037057" target="_blank">Hemifacial spasm: a nodal, stretch-mediated paradigm beyond neurovascular compression.</a></b> Sekiya T, <i>British journal of neurosurgery</i>. (58.8% NEURAL; 21.5% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42032754" target="_blank">Phase-dependent efficacy of intravenous amniotic mesenchymal stem cells in a rat spinal cord injury model.</a></b> Qi Y, Kawabori M, Yamaguchi S, Nakahara Y, Li Z, Ohtsuki S, Fujimura M, <i>Stem cell research &amp;amp; therapy</i>. (45.3% NEURAL; 17.9% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42039515" target="_blank">Diverse paths for chemoreception in ciliated neurons contacting the cerebrospinal fluid in the spinal cord.</a></b> Verran E, Moizan L, Tocquer L, Quan FB, Wyart C, <i>bioRxiv : the preprint server for biology</i>. (86.3% NEURAL; 7.8% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42039639" target="_blank">A neuron-glia circuit anticipates hypoxia to regulate organismal oxygen use.</a></b> Zhang R, Wei Z, How JJ, Nardin M, Narayan S, Kinkhabwala A, Chen W, Lim JX, Ruetten VMS, Rupashinge A, Haesemeyer M, Mensh BD, Fishman MC, Engert F, Babadi B, Du J, Prober DA, Ahrens MB, <i>bioRxiv : the preprint server for biology</i>. (93.0% NEURAL; 2.5% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42039543" target="_blank">The External Globus Pallidus is a Basal Ganglia Output Hub with Action-Specific Circuits.</a></b> Gu Z, Lewis ZR, Tang J, Mendelsohn A, Vicente AM, Nikoobakht L, Rosenberg S, Chakravarth A, Paixao V, Tirumalasetti MS, Abuagala GA, Khalili A, Thomas ED, Fancher KA, Mallory M, Manning A, Bertagnolli D, Goldy J, Rimorin C, Tieu M, Cardenas T, Torkelson A, Chakka AB, Yao S, Sorensen SA, Smith KA, Hammond LA, Peterka DS, Zeng H, Tasic B, Costa RM, <i>bioRxiv : the preprint server for biology</i>. (98.0% NEURAL; 0.5% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42033992" target="_blank">Design, synthesis, and biological evaluation of novel diphenylmethyl-sulfinyl-bridged bisamides as wakefulness-promoting and anti-fatigue agents.</a></b> Xiong H, Wu Y, Wang Y, Xu J, Wang L, Peng T, Liu S, Zhang S, <i>European journal of medicinal chemistry</i>. (26.0% NEURAL; 14.9% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42042200" target="_blank">Anti-Neuroinflammatory Naphtho-&#947;-Pyrones from a Deep-Sea-Derived Fungus Aspergillus niger 3A00562.</a></b> Xu ZH, Zou ZB, Wang CX, Li C, Yang XW, Wang JS, <i>Marine drugs</i>. (55.3% NEURAL; 22.1% 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/42048016" target="_blank">Biomechanical simulation of a novel expandable artificial vertebral body for the restoration of spinal function following severe kyphotic subapical vertebrectomy.</a></b> Wang Z, Zhang Z, Liu Y, Li W, <i>Medical &amp;amp; biological engineering &amp;amp; computing</i>. (95.1% ORTHOPAEDICS/SPINE; 2.7% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42044992" target="_blank">Indications and Limitations of Standalone Percutaneous Vertebroplasty for Reverse Chance Fractures Associated With Ankylosing Spinal Disorders.</a></b> Fukushi R, Oguma H, Kawaguchi S, <i>International journal of spine surgery</i>. (98.4% ORTHOPAEDICS/SPINE; 1.1% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42044531" target="_blank">Rare concomitant thoracic deformities: navigating the interplay between Scheuermann kyphosis and pectus excavatum. Illustrative case.</a></b> Kress DJ, Haselhuhn JJ, Lassiter RL, Polly DW, <i>Journal of neurosurgery. Case lessons</i>. (93.4% ORTHOPAEDICS/SPINE; 4.6% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42044767" target="_blank">Surgical management of cervical spine metastasis: an update.</a></b> Fasinella MR, Anzalone L, Meynard A, Barrey C, <i>Neuro-Chirurgie</i>. (97.4% ORTHOPAEDICS/SPINE; 1.1% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42033576" target="_blank">Vertebral pelvic angles accurately predict risk of proximal junctional kyphosis following long-segment fusion for adult spinal deformity.</a></b> Fields MW, Scheer JK, Weintraub M, Baltazar J, Hassan F, Taha O, Ferraro AM, Lewerenz E, Cooney MJ, Lombardi JM, Sardar ZM, Lenke LG, Lehman RA, <i>Spine deformity</i>. (98.4% ORTHOPAEDICS/SPINE; 0.8% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42034167" target="_blank">Clinical Outcomes of Spinal Osteotomy with Preservation of the &quot;Hinge Structure&quot; for Severe Deformities: A Retrospective Cohort Study.</a></b> Zhang Y, Chen W, Cai C, Yang S, Hu X, Qiu H, Wei Z, Chu T, <i>Orthopaedics &amp;amp; traumatology, surgery &amp;amp; research : OTSR</i>. (97.8% ORTHOPAEDICS/SPINE; 1.5% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42026606" target="_blank">A finite element analysis of the biomechanical stability of tri-cortical versus traditional pedicle screw fixation in adult thoracic spine.</a></b> Sun K, Tang Z, Li J, Qin X, Mao S, Shi B, Qiu Y, Zhu Z, Liu Z, <i>BMC musculoskeletal disorders</i>. (96.8% ORTHOPAEDICS/SPINE; 0.9% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42051450" target="_blank">Endocrine-informed monitoring of scoliosis in Prader-Willi syndrome: integrating neuroendocrine pathophysiology, growth hormone therapy, and pubertal transition.</a></b> Zhu M, Sun Q, Zhang J, Cai K, Guo Z, Wu Q, Wang Y, Chen J, <i>Frontiers in endocrinology</i>. (93.4% ORTHOPAEDICS/SPINE; 1.7% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42040771" target="_blank">An inter-laboratory study of the multi-dimensional behaviors of analogue lumbar spine surrogates: towards standardization in spine testing.</a></b> Coltoff EC, Dukkipati ST, Brown PJ, Driscoll M, <i>Frontiers in bioengineering and biotechnology</i>. (87.3% ORTHOPAEDICS/SPINE; 5.3% TRAUMA/IMPACT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42028149" target="_blank">Biomechanical study of robot-navigated targeted cross-puncture percutaneous vertebroplasty for K&amp;uuml;mmell's disease: finite element analysis.</a></b> Zhou H, Gao C, Zhang X, Chen B, Meng X, Liao Y, Tang X, Li H, Wang Y, <i>Frontiers in rehabilitation sciences</i>. (72.0% ORTHOPAEDICS/SPINE; 17.7% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42027760" target="_blank">PCKP versus UPKP for moderate-to-severe osteoporotic vertebral compression fractures: a prospective randomized controlled trial revealing synergistic mechanisms of optimized bone cement distribution and anti-osteoporosis therapy on medium-to-long-term outcomes.</a></b> Yang F, Luo Y, Chen K, He R, <i>Frontiers in aging</i>. (98.0% ORTHOPAEDICS/SPINE; 1.1% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42037873" target="_blank">Radiographic Sagittal Alignment and Kinetic Chain Alterations in Geriatric Patients With Scoliosis: A Case Series.</a></b> Whelan JP, Dick JM, <i>Cureus</i>. (94.2% ORTHOPAEDICS/SPINE; 1.8% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42038910" target="_blank">Scoliosis as a Paradigm of Pathological Spinal Curvature: Molecular Mechanisms and Imaging Innovations : Molecular and Imaging Insights in Scoliosis.</a></b> Ghanbari A, Emami Meybodi T, Nezhadmohammad Namaghi B, Khalili Bisafar T, Jahanshahi M, Khosravi K, Mokhtari K, Roshanravan B, <i>Galen medical journal</i>. (91.0% ORTHOPAEDICS/SPINE; 5.2% METHODS)<br />
<br />
<br />
<span style="font-size:16px"><b>*ORTHOPAEDICS (SURGERY)*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42058844" target="_blank">Failure modes of mechanically aligned versus kinematically aligned total knee arthroplasty.</a></b> Grayson W, Benson M, Brown NM, <i>Journal of orthopaedics</i>. (61.8% ORTHOPAEDICS/SURGERY; 19.7% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42059482" target="_blank">Biomechanical Assessment of Femur Fracture Fixation Using Modified Locking Compression Plate Made of Biodegradable and Non-Biodegradable Materials Under Physiological Loading During Healing Phases.</a></b> Chandra G, Ghosh R, Verma V, <i>Journal of biomedical materials research. Part B, Applied biomaterials</i>. (65.6% ORTHOPAEDICS/SURGERY; 17.6% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42059050" target="_blank">Functional alignment: Defined personalized alignment strategy with promising outcomes and room for improvement.</a></b> Andriollo L, Gregori P, Koutserimpas C, Lustig S, <i>Knee surgery, sports traumatology, arthroscopy : official journal of the ESSKA</i>. (57.1% ORTHOPAEDICS/SURGERY; 20.4% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42056270" target="_blank">Perioperative denosumab exposure and risk of revision after total hip and knee arthroplasty in osteoarthritis: a registry-based data linkage study.</a></b> Ciaffi J, Bordini B, Cosentino M, Mazziotti G, Caporali R, Di Martino A, Faldini C, Russell L, Goodman SM, Ursini F, <i>Osteoporosis international : a journal established as result of cooperation between the European Foundation for Osteoporosis and the National Osteoporosis Foundation of the USA</i>. (65.4% ORTHOPAEDICS/SURGERY; 19.6% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42056570" target="_blank">Histological and Biomechanical Comparison of Different Dissection Planes in Brow Lift: An Experimental Rabbit Model and Its Clinical Implications.</a></b> &#350;ibar S, Duran M, Ye&#351;il&#305;rmak SC, Perdeci E, Elibol FKE, &amp;Ouml;zko&amp;ccedil;er SE, &#304;smail BK, <i>Aesthetic plastic surgery</i>. (31.5% ORTHOPAEDICS/SURGERY; 26.0% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42053626" target="_blank">Advancing pelvic and acetabular trauma education.</a></b> Pfeifer R, Gaensslen A, Lindahl J, Enocson A, Hildebrand F, Pape HC, <i>Archives of orthopaedic and trauma surgery</i>. (38.0% ORTHOPAEDICS/SURGERY; 16.5% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42047751" target="_blank">Osteotomies of the pediatric hip joint.</a></b> Ziegler C, Endres F, <i>Orthopadie (Heidelberg, Germany)</i>. (56.1% ORTHOPAEDICS/SURGERY; 34.0% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42047459" target="_blank">Editorial Commentary: Arthroscopically Assisted Lower Trapezius Transfer: Promising Technique Still Searching for the Optimal Indications or Panacea for All Irreparable Rotator Cuff Tears?</a></b> Rashid MS, Roberts CP, <i>Arthroscopy : the journal of arthroscopic &amp;amp; related surgery : official publication of the Arthroscopy Association of North America and the International Arthroscopy Association</i>. (89.0% ORTHOPAEDICS/SURGERY; 2.4% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42037326" target="_blank">Biomechanical study on the combined effects of femoral component rotational malalignment and osteoporosis in unicompartmental knee arthroplasty.</a></b> Zhou T, Liu P, Lu N, Sun Z, Tian J, Diao C, <i>Sheng wu yi xue gong cheng xue za zhi = Journal of biomedical engineering = Shengwu yixue gongchengxue zazhi</i>. (46.3% ORTHOPAEDICS/SURGERY; 22.1% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42035720" target="_blank">How does patient-specific unicompartmental knee arthroplasty influence squatting biomechanics at mid-term follow up?</a></b> M'barki H, Belzile EL, B&amp;eacute;dard M, Angers M, Turcot K, <i>The Knee</i>. (36.9% ORTHOPAEDICS/SURGERY; 36.8% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42033430" target="_blank">Biomechanical Analysis of Standard Locking Compression Plate versus Dual Minifragment Locking Plates in Ulna Shaft Fracture Fixation: A Human Cadaveric Study.</a></b> Kraus M, van Rossenberg L, Zderic I, Pastor T, Gueorguiev B, Richards RG, Breckwoldt TK, Pape HC, Beeres FJP, Pastor T, <i>The Journal of hand surgery</i>. (80.0% ORTHOPAEDICS/SURGERY; 13.0% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42026522" target="_blank">Inferior patient-reported outcomes after total knee arthroplasty for post-traumatic versus primary osteoarthritis: a registry study.</a></b> Syrikas I, Desai N, Tsikandylakis G, Karikis I, <i>BMC musculoskeletal disorders</i>. (52.5% ORTHOPAEDICS/SURGERY; 33.0% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42041736" target="_blank">Ablation-First Balloon-Assisted Acetabuloplasty for Painful Acetabular Metastases: Clinical Outcomes and Mechanical Rationale.</a></b> Pusceddu C, Faiella E, Rinaldi PM, Ares-Vidal J, Maiques Llac&amp;eacute;r JM, Radalov I, Solano L&amp;oacute;pez A, Marsico S, <i>Current oncology (Toronto, Ont.)</i>. (63.9% ORTHOPAEDICS/SURGERY; 10.2% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42034517" target="_blank">Integrated surgical management of forequarter lateral implosion injury: Technical considerations and early outcomes.</a></b> Chua SKK, Balasubramaniam S, Cole PA, Tan BY, <i>Injury</i>. (59.0% ORTHOPAEDICS/SURGERY; 22.5% TRAUMA/IMPACT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42052365" target="_blank">Finite element analysis of internal fixation with clavicular hook plate vs. adjustable loop plate for Neer Type IIB distal clavicle fractures.</a></b> Zheng L, Li B, Wang X, <i>Frontiers in surgery</i>. (78.2% ORTHOPAEDICS/SURGERY; 6.1% ORTHOPAEDICS/SPINE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42027341" target="_blank">Design and Validation of a 3D-Printed External Aiming Jig for Percutaneous Fixation of Minimally Displaced Posterior Acetabular Column Fractures.</a></b> Kekatpure DAL, Kekatpure DAL, Shrivastava DS, <i>Indian journal of orthopaedics</i>. (77.3% ORTHOPAEDICS/SURGERY; 4.5% PROSTHETICS/ORTHOTICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42027331" target="_blank">Clinical and Radiological Outcomes of a Novel Fixed Angle Device in the Management of Femoral Neck Fractures in Indian Population.</a></b> Raina A, Dar TA, Ahmed N, Maajid A, <i>Indian journal of orthopaedics</i>. (82.8% ORTHOPAEDICS/SURGERY; 5.8% BONE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42054734" target="_blank">Can PEEK cage replace bone graft in calcaneal lengthening osteotomy in treatment of pediatric pes planovalgus?</a></b> Hussein MA, Saad H, Eltabaa A, Abdelnaser A, Abdelrazek A, <i>Foot (Edinburgh, Scotland)</i>. (54.3% ORTHOPAEDICS/SURGERY; 19.2% HAND/FINGER/FOOT/TOE)<br />
<br />
<br />
<span style="font-size:16px"><b>*POSTURE/BALANCE*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42057748" target="_blank">Postural Control Determinants of Gait Dysfunction in Huntington's Disease.</a></b> Porciuncula F, Wasserman P, Marder KS, Rao AK, <i>Neurorehabilitation and neural repair</i>. (67.2% POSTURE/BALANCE; 26.5% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42055020" target="_blank">Quiet Standing: A Simple Motor Task but a Hard Modeling Challenge.</a></b> Shiozawa K, Tessari F, Sugimoto Dimitrova R, Hogan N, <i>Progress in biomedical engineering (Bristol, England)</i>. (98.8% POSTURE/BALANCE; 0.6% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42054274" target="_blank">A supine exercise program linking trunk stability with lower extremity coordination is associated with improved body balance and agility: A study using randomized crossover and pre-post trial designs.</a></b> Atomi A, Sato M, Oyauchi M, Takano W, Shimizu M, Watanabe T, Atomi T, Atomi Y, <i>PloS one</i>. (80.0% POSTURE/BALANCE; 13.7% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42048693" target="_blank">Biomechanical adaptation to repeated slips during standing in people with Parkinson's disease.</a></b> Brown D, Mahmoudzadeh Khalili S, Ahn J, Lazarus J, Yang F, <i>Journal of biomechanics</i>. (97.0% POSTURE/BALANCE; 1.6% REHABILITATION)<br />
<br />
<br />
<span style="font-size:16px"><b>*PROSTHETICS/ORTHOTICS*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42056260" target="_blank">Digital fabrication and biomechanical optimization of silicone prostheses for partial foot amputation.</a></b> Karatoprak AP, Aydin L, Aksu B, <i>Scientific reports</i>. (99.1% PROSTHETICS/ORTHOTICS; 0.3% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42043992" target="_blank">A Lightweight Multi-articular Passive Exoskeleton Using a Single Elastic Band to Improve Crouch Gait Pattern: A Pilot Study.</a></b> Kang J, Choi JR, Kang S, Park J, Park MS, Cho KJ, <i>IEEE transactions on neural systems and rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society</i>. (78.5% PROSTHETICS/ORTHOTICS; 10.7% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42037325" target="_blank">The influence of articular surface conformity on the biomechanics of rotating hinge knee prostheses.</a></b> Li Y, Zhang Z, Li L, Zhang J, Chen Z, Zhang W, <i>Sheng wu yi xue gong cheng xue za zhi = Journal of biomedical engineering = Shengwu yixue gongchengxue zazhi</i>. (92.1% PROSTHETICS/ORTHOTICS; 3.8% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42032848" target="_blank">Additive manufacturing of lower-limb prosthetic sockets: a scoping review with a focus on multi-material approaches.</a></b> Alharbi S, Sewell P, Dyer B, Batley A, Montalv&amp;atilde;o D, <i>Journal of medical engineering &amp;amp; technology</i>. (98.2% PROSTHETICS/ORTHOTICS; 0.3% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42034000" target="_blank">Influence of prefabricated orthopedic footwear with rocker soles on foot loading while walking: A comparative biomechanical investigation of three different types of footwear.</a></b> Stief T, Walther M, <i>Gait &amp;amp; posture</i>. (74.2% PROSTHETICS/ORTHOTICS; 16.7% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42031355" target="_blank">Plantar intrinsic foot muscle activity across the foot posture spectrum when walking in non-textured and textured foot orthoses.</a></b> Robb KA, Perry SD, <i>Archives of physical medicine and rehabilitation</i>. (92.3% PROSTHETICS/ORTHOTICS; 3.8% HAND/FINGER/FOOT/TOE)<br />
<br />
<br />
<span style="font-size:16px"><b>*REHABILITATION*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42053118" target="_blank">Prolotherapy versus epidural steroid injections for lumbar pain with associated leg pain: A pragmatic randomized controlled trial.</a></b> Wende O, Reeves KD, Vishnevsky G, Cheng AL, Rabago D, <i>PM &amp;amp; R : the journal of injury, function, and rehabilitation</i>. (59.1% REHABILITATION; 23.1% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42050703" target="_blank">The role of quadriceps strength and quadriceps-focused rehabilitation following medial meniscus posterior root repair: a systematic review.</a></b> Zhao W, Liu Q, Ren G, Xu J, Han C, <i>Journal of orthopaedic surgery and research</i>. (75.3% REHABILITATION; 10.3% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42049158" target="_blank">Effects of an 8-week pickleball intervention on dual-task gait performance and inter-joint coordination in pre-frail older adults.</a></b> Zeng Z, Hu X, Sit CH, Yang Y, <i>Experimental gerontology</i>. (47.1% REHABILITATION; 37.9% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42031122" target="_blank">Effectiveness of a multicomponent intervention on intrinsic capacity among community-dwelling adults aged &#8805;75&#8239;years: A prospective controlled study with 12-month follow-up.</a></b> Zhou Y, Li J, Lu F, Feng G, Zi J, Wu F, Ding Q, Ling W, Wang Y, Lai R, Wang Q, Qu H, Li M, Peng Q, Zhao J, Wang Y, Zhu M, Liu X, <i>Experimental gerontology</i>. (51.7% REHABILITATION; 36.0% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42046652" target="_blank">Comparing the effect of off-loading knee brace with and without local muscle vibration on clinical and biomechanical outcomes in patients with medial knee osteoarthritis: A randomized clinical trial.</a></b> Zangi M, Bahramizadeh M, Khosravi M, Farahmand F, Arazpour M, Barati K, <i>Journal of rehabilitation and assistive technologies engineering</i>. (49.9% REHABILITATION; 31.7% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42042757" target="_blank">Neurocognitive Therapeutic Exercise Integrated with Focal Mechanical Vibrations in a CANVAS Patient: A Case Report.</a></b> Camerota F, Topa FM, Di Pietro G, Zangrando F, Coluccia L, Mangone M, Paoloni M, Truini A, Celletti C, <i>Neurology international</i>. (79.8% REHABILITATION; 15.4% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42051950" target="_blank">Protocol for the &quot;motor-brain development&quot; trial: effects of motor-focused exercise training on brain function and gross motor skills in preschool children.</a></b> Wang XC, Zhou B, Bao YH, Xia H, <i>Frontiers in pediatrics</i>. (65.1% REHABILITATION; 12.6% SPORT/EXERCISE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42040650" target="_blank">Case Report: Improving gait and fatigue in multiple sclerosis through wearable electrical stimulation: a single-patient study.</a></b> Filoni S, Romano F, Cardone D, Urbano S, Intiso D, Pellegrino R, Russo EF, Perpetuini D, Merla A, <i>Frontiers in rehabilitation sciences</i>. (81.2% REHABILITATION; 12.5% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42037700" target="_blank">Cortical activation patterns mediating motor recovery: a randomized controlled fNIRS study of rTMS-integrated dual-task training in stroke survivors.</a></b> Sheng Y, Han J, <i>Frontiers in neurology</i>. (76.6% REHABILITATION; 14.6% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42028108" target="_blank">Effects of a 12-week increased hip flexion gait exercise intervention in individuals with obesity and knee osteoarthritis: a randomized crossover feasibility study.</a></b> Oliveira N, Stavres J, Chiu CY, Graybeal AJ, <i>Frontiers in sports and active living</i>. (79.4% REHABILITATION; 7.0% JOINT/CARTILAGE)<br />
<br />
<br />
<span style="font-size:16px"><b>*ROBOTICS*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42054470" target="_blank">Twirlbot: Tumbleweed-inspired rolling robot.</a></b> Chen C, Wang Z, Wang Y, Shi P, Liu Z, Si M, Duan S, Hou W, He X, <i>Science advances</i>. (99.4% ROBOTICS; 0.1% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42059471" target="_blank">A Worm-Inspired Origami Robot with Multimodal Locomotion for Adaptive Mobility in Complex Pipeline Environments.</a></b> Zhang Q, Tan K, He Z, Pang H, Wang Y, Fang H, Xu J, <i>Advanced science (Weinheim, Baden-Wurttemberg, Germany)</i>. (99.4% ROBOTICS; 0.2% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42055074" target="_blank">Designing McKibben Muscles: A Critical Review for Practical Implementation.</a></b> Kortman VG, Jovanova J, Nabae H, Endo G, Suzumori K, Sakes A, <i>Bioinspiration &amp;amp; biomimetics</i>. (41.3% ROBOTICS; 25.3% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42037205" target="_blank">MGDP: Mastering a Generalized Depth Perception Model for Quadruped Locomotion.</a></b> Dong Y, Ma J, Lu Y, Zhang J, Li W, Chen Y, Zhang T, Chen X, Yu Z, Lu P, <i>Advanced science (Weinheim, Baden-Wurttemberg, Germany)</i>. (74.9% ROBOTICS; 15.0% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42029396" target="_blank">Dynamic Modeling of a Soft Eversion-Based Growing Robot: Physical Analysis, Simulation, and Experimental Validation.</a></b> Kalibala A, Nada AA, Ishii H, El-Hussieny H, <i>Soft robotics</i>. (96.0% ROBOTICS; 3.0% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42041515" target="_blank">Multi-Gait In-Pipe Locomotion via Programmable Friction Reorientation.</a></b> Lee J, Kim J, <i>Biomimetics (Basel, Switzerland)</i>. (99.5% ROBOTICS; 0.2% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42041497" target="_blank">From Biological Analogs to Robotic Embodiment: A Systematic Biomimetic Translation Framework Mediated by Traditional Craft.</a></b> Li J, Wu F, Xiao C, <i>Biomimetics (Basel, Switzerland)</i>. (97.5% ROBOTICS; 1.4% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42041464" target="_blank">Image Segmentation-Guided Visual Tracking on a Bio-Inspired Quadruped Robot.</a></b> Xiao H, Ma G, Wu W, <i>Biomimetics (Basel, Switzerland)</i>. (96.8% ROBOTICS; 1.4% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42041458" target="_blank">Collision Prediction and Social-Norm-Fusion-Based Social-Navigation Method for Quadruped Robots.</a></b> Bei J, Zhu Q, Shi Z, Liu Y, <i>Biomimetics (Basel, Switzerland)</i>. (98.0% ROBOTICS; 0.6% 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/42056640" target="_blank">The Effects of Shoe Sole Thickness on Running Biomechanics and Economy: A Systematic Review.</a></b> Kettner C, Krapp F, Stein T, <i>Sports medicine - open</i>. (36.7% SPORT/EXERCISE; 31.2% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42052658" target="_blank">Systematic review on machine learning applications in Paralympic sports: current practice and future research.</a></b> Liu J, Do MN, Guo J, Lin CW, Cheung WC, Bleakney AW, Jan YK, <i>Disability and rehabilitation. Assistive technology</i>. (89.6% SPORT/EXERCISE; 5.1% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42048206" target="_blank">Autoregressive Time-Series Analysis of Biomechanical Anomalies: Insights into Exercise-Induced Fatigue in Healthy Participants.</a></b> Shao E, Zhao J, Li W, Baker JS, Goda TJ, Fang Y, Cen X, Gu Y, <i>IEEE transactions on neural systems and rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society</i>. (46.9% SPORT/EXERCISE; 25.3% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42046432" target="_blank">Automated detection of racket-ball impact timing in tennis strokes using deep learning models and a markerless motion capture system.</a></b> Lee A, Byun K, Kim Y, Choi E, Lee HK, <i>Sports biomechanics</i>. (70.6% SPORT/EXERCISE; 13.8% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42034351" target="_blank">Movement Quality Assessment During Planned and Unplanned Change-of-Direction Maneuvers Among Female Basketball Players.</a></b> Andreyo E, Unverzagt C, Dos'Santos T, Dawes JJ, <i>Journal of sport rehabilitation</i>. (94.3% SPORT/EXERCISE; 3.4% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42032306" target="_blank">Imaging of injuries in rock climbers.</a></b> Promer HJ, Chen KC, Chang EY, <i>Skeletal radiology</i>. (32.6% SPORT/EXERCISE; 27.7% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42035858" target="_blank">Hurting together: The gendered embodiment of pain in women ultrarunners.</a></b> Bennett EV, Ratzlaff BH, Hoar S, Stellingwerff T, Unger T, Gathercole R, <i>Psychology of sport and exercise</i>. (96.5% SPORT/EXERCISE; 1.3% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42031906" target="_blank">Integrating visual transformers with biomechanical constraints for action quality assessment in competitive sports.</a></b> Shicen L, <i>Scientific reports</i>. (98.2% SPORT/EXERCISE; 0.4% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42026723" target="_blank">Biomechanics associated with bone stress injuries while using advanced footwear technology in elite distance runners.</a></b> Bruneau MM, Gaudette LW, Sirls E, Hollander K, Saxena A, Hoenig T, De Carlo F, Fodera A, Sullivan V, Bean A, Lussner A, Baxter Z, Tenforde AS, <i>PM &amp;amp; R : the journal of injury, function, and rehabilitation</i>. (65.5% SPORT/EXERCISE; 7.6% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42038510" target="_blank">Cross-sectional Evaluation of the Mechanical Axis and Other Angular Parameters of the Lower Limbs in Male Professional Soccer Players.</a></b> Machado JKS, Nascimento EGD, Menezes ES, <i>Revista brasileira de ortopedia</i>. (97.1% SPORT/EXERCISE; 0.7% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42038507" target="_blank">Cross-sectional Evaluation of the Mechanical Axis and Other Angular Parameters of the Lower Limbs in Male Professional Soccer Players.</a></b> Machado JKS, Nascimento EGD, Menezes ES, <i>Revista brasileira de ortopedia</i>. (97.1% SPORT/EXERCISE; 0.7% ERGONOMICS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42029525" target="_blank">Effect of Post-Activation Performance Enhancement in Combat Sports: A Systematic Review and Meta-Analysis-Part II: Specific Performance Indicators.</a></b> Terbalyan A, Skotniczny K, &#379;ak M, Jarosz J, Roczniok R, <i>Journal of functional morphology and kinesiology</i>. (99.4% SPORT/EXERCISE; 0.1% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42043085" target="_blank">The Influence of Biological Age and Sex on Gross Motor Skill Development in Young Athletes: A Pilot Study.</a></b> Chapelski MS, Tait T, Woods S, Benson S, Erlandson MC, Humbert ML, Baxter-Jones ADG, <i>Sports (Basel, Switzerland)</i>. (97.1% SPORT/EXERCISE; 0.8% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42029523" target="_blank">Correlates of Eccentric Metrics and Sprint Acceleration and Deceleration Performance in University Athletes.</a></b> Gordon G, Nadar T, Green A, <i>Journal of functional morphology and kinesiology</i>. (99.4% SPORT/EXERCISE; 0.1% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42052547" target="_blank">Foot-ground interaction and clubhead speed: impulse-based energy transfer as the key mechanism in the golf swing.</a></b> Rachnavy P, Chaemklan K, Agrawal DK, Pojprapai S, Rachnavy H, Senakam T, <i>Frontiers in sports and active living</i>. (93.9% SPORT/EXERCISE; 3.0% GAIT/LOCOMOTION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42052544" target="_blank">Estimation of ground reaction force direction in inline speed skating motion.</a></b> Kimura Y, Yokozawa T, <i>Frontiers in sports and active living</i>. (52.0% SPORT/EXERCISE; 26.5% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42041426" target="_blank">Emergency Clinical Decision for Sports Injury Management: A Wearable Sensor-Driven Framework from Training to Rehabilitation.</a></b> Xu M, Lang S, Wang J, Huang L, Wang M, Su M, Zhu H, <i>Biosensors</i>. (77.8% SPORT/EXERCISE; 12.9% REHABILITATION)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42051621" target="_blank">Genes and Injuries in Sports: A Systematic Review and Meta-Analysis.</a></b> &#321;osi&#324;ska K, Ci&#281;szczyk P, Zajac A, Markowski J, Pilch J, Sm&amp;oacute;&#322;ka W, Maszczyk A, <i>Journal of human kinetics</i>. (93.5% SPORT/EXERCISE; 3.0% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42051617" target="_blank">Effects of Hot Water Immersion at Different Temperatures during a Transition Period on Vertical Jump Performance.</a></b> Li C, Wang A, Hurr C, <i>Journal of human kinetics</i>. (96.7% SPORT/EXERCISE; 1.2% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42029513" target="_blank">Functional Biomechanical Analysis of Javelin Throw Technique in Junior Athletes.</a></b> Cuciorovschi L, Brus DI, Teri&#537; &#536;, Enoiu RS, <i>Journal of functional morphology and kinesiology</i>. (98.6% SPORT/EXERCISE; 0.2% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42029500" target="_blank">Special Issue &quot;Biomechanical Analysis in Physical Activity and Sports-2nd Edition&quot;.</a></b> Forte P, <i>Journal of functional morphology and kinesiology</i>. (94.5% SPORT/EXERCISE; 1.8% METHODS)<br />
<br />
<br />
<span style="font-size:16px"><b>*TENDON/LIGAMENT*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42028009" target="_blank">Optimizing landing mechanics to modulate patellar tendon loading: An individualized moment arm analysis.</a></b> Xuan B, Song Y, Sun D, Li F, Gao S, Zhang Q, Cen X, Xiang L, Gao Z, Kov&amp;aacute;cs B, Fekete G, Gu Y, <i>iScience</i>. (89.4% TENDON/LIGAMENT; 2.1% SPORT/EXERCISE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42059955" target="_blank">Extensor apparatus of the knee: anatomy and injury patterns.</a></b> Flores D, Atinga A, Beaulieu C, Alaia EF, Probyn L, <i>Skeletal radiology</i>. (48.6% TENDON/LIGAMENT; 23.1% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42053076" target="_blank">The impact of early graft viscoelastic degeneration on tibiofemoral joint stress after anterior cruciate ligament reconstruction: a finite element analysis.</a></b> Lian Z, Sun B, Yang Q, Kong X, Yan Y, Yao J, Yang B, Fan Y, <i>Computer methods in biomechanics and biomedical engineering</i>. (79.6% TENDON/LIGAMENT; 5.2% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42045876" target="_blank">The impact of general joint hypermobility on ankle ligament stiffness in young women: a shear wave elastography investigation.</a></b> Chen Z, Liang H, Zhou W, Li Y, Yang L, Gao S, Xiang H, Du R, <i>BMC musculoskeletal disorders</i>. (67.0% TENDON/LIGAMENT; 21.3% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42037521" target="_blank">Pullout testing for sacrospinous ligament and uterosacral ligament in apical suspension: A cadaveric biomechanical study.</a></b> Lo TS, Li CW, Ro AL, Hsieh TH, Lin YH, Tan HK, <i>International journal of gynaecology and obstetrics: the official organ of the International Federation of Gynaecology and Obstetrics</i>. (88.1% TENDON/LIGAMENT; 7.1% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42051366" target="_blank">Anatomic Multiligament Knee Reconstruction With a Medial Meniscal Repair in the Setting of a Valgus Hyperextension Injury.</a></b> Lang DL, Kramer RT, Wilebski BJ, Tollefson LV, Lee DR, Rasmussen MT, LaPrade RF, <i>Video journal of sports medicine</i>. (62.0% TENDON/LIGAMENT; 25.2% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42034774" target="_blank">Limb underloading and reduced functional use of the knee during the squat is linked to reduced jumping performance in athletes six months after anterior cruciate ligament reconstruction.</a></b> Tsai YJ, Tsai LC, Sprague P, Lyle MA, <i>Physical therapy in sport : official journal of the Association of Chartered Physiotherapists in Sports Medicine</i>. (56.7% TENDON/LIGAMENT; 24.6% SPORT/EXERCISE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42042560" target="_blank">In Vivo Long Head of the Biceps Tendon Stiffness Varies with Forearm Position During Active Contraction: Implications for Personalized Rehabilitation After SLAP Lesions.</a></b> Pederson Z, Giambini H, <i>Journal of personalized medicine</i>. (83.0% TENDON/LIGAMENT; 6.8% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42038250" target="_blank">Exploring Variable Achilles Tendon Loading Via Active Acoustics.</a></b> Rosa LG, Ozmen GC, Nichols C, Sawicki GS, Inan OT, <i>IEEE sensors journal</i>. (87.2% TENDON/LIGAMENT; 6.2% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42037506" target="_blank">Posterior Horn Meniscus Centroid Position Is Altered Soon After Noncontact ACL Injury in Males and Females.</a></b> Hamilton BT, Sturnick D, Argentieri EC, Fiorentino N, Tourville TW, Failla M, Gardner-Morse M, Vacek PM, Beynnon BD, <i>Journal of orthopaedic research : official publication of the Orthopaedic Research Society</i>. (60.8% TENDON/LIGAMENT; 25.9% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42046637" target="_blank">Augmented Repair of an Acute Midsubstance Patellar Tendon Rupture Using Suture Anchors, InternalBrace&amp;trade;, and Achilles Tendon Allograft: A Case Report.</a></b> Ponce de Leon Sandoval IA, Robles Hern&amp;aacute;ndez NA, Kerbel Sutton J, Remolina S&amp;aacute;nchez Rucobo E, Castillo de la Pe&amp;ntilde;a J, <i>Cureus</i>. (79.0% TENDON/LIGAMENT; 17.2% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42053188" target="_blank">Pilot study: Effects of ovariectomy-induced estrogen deficiency on the biomechanical and structural properties of the intact anterior cruciate ligament in a porcine model.</a></b> Kakiage H, Takahashi T, Kaneda Y, Kurashina W, Takeshita K, Chikuda H, <i>SICOT-J</i>. (97.8% TENDON/LIGAMENT; 0.5% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42038857" target="_blank">Impact of Ligamentous Adhesion to the Posterior Cruciate Ligament on Radiological, Arthroscopic, and Clinical Outcomes One Year After ACL Reconstruction: A Cohort Study :</a></b> Yeganeh A, Amiri S, Moghtadaei M, Doulabi P, KhajeMozafari J, Hemmatyar A, Mehrvar A, Mokhtari K, Eslami Vaghar M, <i>Galen medical journal</i>. (92.9% TENDON/LIGAMENT; 4.2% 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/42058964" target="_blank">ROS-responsive hydrogels functionalized with Cu/Zn MOF targeting oxidative stress mitigation and inflammation modulation to promote spinal cord injury repair.</a></b> Ma Y, Liu Y, Xie T, Zhao Y, Liu S, Ju C, Li H, Wang Y, Luo R, Wang X, Huang D, Yan L, Zhu L, Hu H, <i>Materials today. Bio</i>. (83.3% TISSUE/BIOMATERIAL; 5.1% NEURAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42057204" target="_blank">Exosomes derived from BMSCs regulate macrophage M1/M2 polarization and promoting tendon-bone healing through circRNA1052.</a></b> Wang G, Xu J, Chen Z, Wang Z, Lin Y, Xu X, Lu Q, Xu Q, Sun Y, Chen L, Xu L, Li X, Wu F, <i>Stem cell research &amp;amp; therapy</i>. (39.9% TISSUE/BIOMATERIAL; 39.0% TENDON/LIGAMENT)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42047541" target="_blank">Electric Field-Driven Dynamic Surface Topography of Pyrene-Linked Graphene Oxide Multilayer Film.</a></b> Sasaki K, Maruyama H, Hoshino T, <i>ACS applied materials &amp;amp; interfaces</i>. (45.5% TISSUE/BIOMATERIAL; 37.4% METHODS)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42046925" target="_blank">Biofabrication of 3D-printed fibrous scaffolds for large muscle tissue engineering: enhancing scalability, myotube formation and surgical handling.</a></b> Sch&amp;auml;tzlein E, Weeger O, Scholpp S, Faulhaber L, Fritschen A, Gerhardus JS, Maatz R, Neuh&amp;auml;usler A, Mandal S, von Klitzing R, Blaeser A, <i>Biomaterials science</i>. (91.9% TISSUE/BIOMATERIAL; 3.9% MUSCLE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42030504" target="_blank">3D GelMA-Chitosan constructs regulate mesenchymal stem cell fate via YAP-dependent mechanotransduction for spinal cord injury repair.</a></b> Luo Q, Que X, Zhou Y, Wang M, Zhu X, Wang H, Jiu J, Li X, <i>Journal of biomaterials applications</i>. (76.7% TISSUE/BIOMATERIAL; 12.6% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42048750" target="_blank">Scar-free wound healing: Advances in biomaterial-based formulations, smart dressings and bioactive therapeutics - a comprehensive review.</a></b> Chakrabarti S, Ahmed RK, Nath S, Nandi A, Pathak MP, <i>Biochemical and biophysical research communications</i>. (98.2% TISSUE/BIOMATERIAL; 0.4% CELLULAR/SUBCELLULAR)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42048935" target="_blank">Closed-loop mechanomedicine in anastomosis: flexible bioelectronics as the missing operational layer: Comment on &quot;mechanomedicine in anastomosis: Bridging biomechanics and clinical outcomes for improved surgical healing&quot; by Shi et al.</a></b> Zhang Q, Liu Y, <i>Physics of life reviews</i>. (55.9% TISSUE/BIOMATERIAL; 17.6% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42041505" target="_blank">An Experimental Measurement Method to Characterize and Apply Platinum Silicon Material for a Biomechanical Replica of the Thoracic Aorta.</a></b> Grave-Capistr&amp;aacute;n MA, Lamonaca F, Carbone G, Torres-SanMiguel CR, <i>Biomimetics (Basel, Switzerland)</i>. (77.8% TISSUE/BIOMATERIAL; 16.1% CARDIOVASCULAR/CARDIOPULMONARY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42027395" target="_blank">Tissue maturation and development of mechanical properties in hyaluronic acid bioink-based cartilaginous constructs.</a></b> B&amp;uuml;ttner P, Faber J, Te&amp;szlig;mar J, Stahlhut P, Budday S, Blunk T, <i>Frontiers in bioengineering and biotechnology</i>. (56.7% TISSUE/BIOMATERIAL; 40.2% JOINT/CARTILAGE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42041481" target="_blank">Bioinspired Sternal Implant Design for Generic Anatomical Reconstruction: An In Silico Framework for Material Selection and Biomechanical Validation.</a></b> Kutbay I, Gerdan Z, &amp;Ccedil;olak M, Tabak Y, &#350;ensoy AT, <i>Biomimetics (Basel, Switzerland)</i>. (65.0% TISSUE/BIOMATERIAL; 7.4% MODELING)<br />
<br />
<br />
<span style="font-size:16px"><b>*TRAUMA/IMPACT*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42056034" target="_blank">Three-dimensional finite element analysis of the protective performance of two types of mouthguards.</a></b> Yan PY, Zhang SS, Liu YL, Yang Y, Wang YJ, Zhang M, <i>Zhonghua kou qiang yi xue za zhi = Zhonghua kouqiang yixue zazhi = Chinese journal of stomatology</i>. (80.1% TRAUMA/IMPACT; 11.1% DENTAL/ORAL/FACIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42058658" target="_blank">Operative management of unstable sternal fracture in polytrauma: a case report and literature review.</a></b> Andrikopoulou C, Selmani E, Leivaditis V, Antzoulas P, Tasios K, Liolis E, Antzoulas A, Litsas D, Papadopoulos PD, Theofanis G, Nikolakopoulos K, Panagiotopoulos I, Schizas D, Kouzelis A, Koletsis E, Mitsos S, Tomos P, Dogjani A, Mulita F, <i>Kardiochirurgia i torakochirurgia polska = Polish journal of cardio-thoracic surgery</i>. (70.2% TRAUMA/IMPACT; 16.8% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42050946" target="_blank">Analysis of the Injury Mechanism of Traumatic Craniocerebral Injury from Falls Based on Finite Element Simulation.</a></b> Yang J, Hu YL, Wang JM, Li ZD, <i>Fa yi xue za zhi</i>. (98.1% TRAUMA/IMPACT; 1.3% MODELING)<br />
<br />
<br />
<span style="font-size:16px"><b>*VETERINARY/AGRICULTURAL*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42053689" target="_blank">Intramedullary pin fixation for a transverse diaphyseal fracture of the femur in a sugar glider (Petaurus breviceps).</a></b> Warsito FDP, Rusli RV, <i>Veterinary research communications</i>. (95.4% VETERINARY/AGRICULTURAL; 2.4% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42047465" target="_blank">Biomechanical evaluation of carpal joint ligaments in the cat: An experimental and radiographic cadaveric study.</a></b> Candela Andrade M, Meinck P, Slunsky P, Brunnberg L, <i>Veterinary surgery : VS</i>. (98.4% VETERINARY/AGRICULTURAL; 0.4% HAND/FINGER/FOOT/TOE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42041086" target="_blank">EXPRESS: Radiographic patterns and lesion associations in feline pelvic trauma.</a></b> Zurlo A, Manfredi M, Sala G, Cappellari F, Carnevale L, Giudice C, Spada E, Di Giancamillo M, Longo M, <i>Journal of feline medicine and surgery</i>. (97.9% VETERINARY/AGRICULTURAL; 0.8% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42037019" target="_blank">Effects of shoeing on forelimb biomechanics in walking horses.</a></b> Wang JY, Guan S, Walmsley E, Wells D, Pandy MG, Whitton C, <i>Equine veterinary journal</i>. (98.4% VETERINARY/AGRICULTURAL; 1.2% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42034156" target="_blank">Biomechanical evaluation of cemented femoral stem constructs with single and double cerclage stabilization of proximal fissures in canine cadaveric femora.</a></b> Kumar KSK, Kumar R, Kumar TS, Tiwari AK, Saxena AC, Kumar ORV, Pawde A, Amarpal, <i>Veterinary journal (London, England : 1997)</i>. (98.4% VETERINARY/AGRICULTURAL; 0.6% ORTHOPAEDICS/SURGERY)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42034132" target="_blank">Application of 3D scanning for modeling and morphometric assessment of Mangalarga Marchador Horses.</a></b> E Alves TTB, Teixeira CS, de Lana DS, Sancler-Silva YFR, Dallago GM, de Godoi FN, Schultz EB, <i>Journal of equine veterinary science</i>. (95.9% VETERINARY/AGRICULTURAL; 2.3% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42030579" target="_blank">Influence of height, body weight and body weight-to-height ratio on jump kinematics in agility dogs.</a></b> L&amp;oacute;pez P, Guti&amp;eacute;rrez-Cepeda L, Mir&amp;oacute; F, <i>Research in veterinary science</i>. (69.0% VETERINARY/AGRICULTURAL; 27.8% COMPARATIVE)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42038037" target="_blank">Evaluation of forces produced by therapeutic elastic resistance bands of various lengths and stiffnesses: a biomechanical study for clinical application.</a></b> Saint-Martin P, McCarthy D, Mulon PY, Millis D, <i>Frontiers in veterinary science</i>. (67.1% VETERINARY/AGRICULTURAL; 10.3% MUSCLE)<br />
<br />
<br />
<span style="font-size:16px"><b>*VISUAL/VESTIBULAR*</b></span><br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42060034" target="_blank">A differentiable simulation of the eye for patient-specific strabismus surgery planning.</a></b> Harsigny E, Alvarez P, Duprez M, Cotin S, <i>International journal of computer assisted radiology and surgery</i>. (49.9% VISUAL/VESTIBULAR; 34.9% MODELING)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42043741" target="_blank">Scheimpflug Photography-Based Evaluation of Structural Iris Changes Across Keratoconus Stages in Comparison with Healthy Eyes.</a></b> &amp;Ouml;zalp O, G&amp;uuml;r OB, &#304;&amp;ccedil;er SM, Y&#305;lmaz HNN, Atalay E, <i>Ophthalmology and therapy</i>. (91.5% VISUAL/VESTIBULAR; 6.8% TISSUE/BIOMATERIAL)<br />
<br />
<b><a href="https://www.ncbi.nlm.nih.gov/pubmed/42047669" target="_blank">Ciliary Zonule of the Human Eye: Structural and Mechanical Aspects.</a></b> Rathaur P, Rodriguez J, Liu V, Bassnett S, <i>Investigative ophthalmology &amp;amp; visual science</i>. (96.1% VISUAL/VESTIBULAR; 3.0% 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/42034034" target="_blank">Synergistic yet different: Rethinking the gastrocnemii as two functionally distinct muscles.</a></b> Aeles J, Hug F, <i>Journal of biomechanics</i>. (98.9% MUSCLE; 0.5% NEURAL)&#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/49460-literature-update-apr-24-2026-apr-30-2026</guid>
		</item>
		<item>
			<title>OpenMBD: An Open-Source Multibody Dynamics Simulator for Biomechanics Research and Education</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/general-discussion/49459-openmbd-an-open-source-multibody-dynamics-simulator-for-biomechanics-research-and-education</link>
			<pubDate>Thu, 30 Apr 2026 16:28:20 GMT</pubDate>
			<description><![CDATA[Hi everyone, 
 
I wanted to share a project I&#8217;ve been developing that may be of interest to those working in impact biomechanics and injury...]]></description>
			<content:encoded><![CDATA[Hi everyone,<br />
<br />
I wanted to share a project I&#8217;ve been developing that may be of interest to those working in impact biomechanics and injury reconstruction.<br />
<br />
I&#8217;ve built <b>OpenMBD</b>, an open-source multibody dynamics framework designed specifically for biomechanical impact reconstruction. The aim is to provide a transparent, flexible platform for forward dynamics simulations. Ideally, it could evolve into a community-driven counterpart to what OpenSim has become for inverse dynamics and musculoskeletal modelling.<br />
<br />
This started as a small side project but has grown into a more complete tool, with:<ul><li>A fully accessible codebase</li>
<li>Example models and workflows</li>
<li>A supporting paper</li>
<li>A step-by-step video tutorial</li>
</ul><br />
I&#8217;m particularly keen for others to explore, critique, and contribute. If you choose to get involved, whether through feedback, issues, or code contributions, I&#8217;ll ensure all contributions are properly acknowledged.<br />
<br />
You can access everything here:<br />
<b>OpenMBD</b>: <a href="https://gtbiomech.github.io/OpenMBD/" target="_blank">https://gtbiomech.github.io/OpenMBD/</a><br />
<br />
I&#8217;d be very interested to hear your thoughts, especially around potential applications, limitations, or features that would make this useful for your work.<br />
<br />
Cheers,<br />
Greg<br />
&#8203;]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/general-discussion">General Discussion</category>
			<dc:creator>Gregory Tierney</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/general-discussion/49459-openmbd-an-open-source-multibody-dynamics-simulator-for-biomechanics-research-and-education</guid>
		</item>
		<item>
			<title><![CDATA[PhD call in Biorobotics at the Sant'Anna School of Advanced Studies in Pisa]]></title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49458-phd-call-in-biorobotics-at-the-sant-anna-school-of-advanced-studies-in-pisa</link>
			<pubDate>Thu, 30 Apr 2026 12:47:35 GMT</pubDate>
			<description><![CDATA[Dear Colleagues, 
 
 
We invite applications for the PhD Programme in BioRobotics at the Sant&#8217;Anna School of Advanced Studies (Pisa, Italy). 
 
This...]]></description>
			<content:encoded><![CDATA[Dear Colleagues,<br />
<br />
<br />
We invite applications for the PhD Programme in BioRobotics at the Sant&#8217;Anna School of Advanced Studies (Pisa, Italy).<br />
<br />
This is a highly interdisciplinary doctoral programme in bioengineering, open to candidates from biomedical, robotics, mechanical, electronic and computer engineering, as well as biology, biotechnology, materials science, physics, mathematics and related fields.<br />
<br />
Approximately 40 fully funded positions are available each year across multiple research areas:<br />
<a href="https://www.santannapisa.it/en/research-themes-biorobotics-institute" target="_blank"><u>https://www.santannapisa.it/en/research-themes-biorobotics-institute</u></a><br />
<br />
PhD details:<ul><li>Duration: 3 years</li>
<li>Scholarship: ~&#8364;1,645 net/month</li>
<li>50% salary increase during mandatory research period abroad</li>
<li>Free meals and additional benefits</li>
<li>Personal research/training budget</li>
</ul><br />
Applicants can indicate up to three preferred research lines.<br />
<br />
More information and application:<br />
<a href="https://www.santannapisa.it/en/training/phd-biorobotics" target="_blank"><u>https://www.santannapisa.it/en/training/phd-biorobotics</u></a><br />
<br />
Deadline: May 15<br />
<br />
Candidates who will graduate by October 2026 are also eligible.<br />
<br />
We strongly encourage interested applicants to explore the websites of individual research groups.<br />
<br />
<br />
Best Regards,<br />
<br />
Giovanni&#8203;]]></content:encoded>
			<category domain="https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions">Jobs and Positions</category>
			<dc:creator>Giovanni Stabile</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49458-phd-call-in-biorobotics-at-the-sant-anna-school-of-advanced-studies-in-pisa</guid>
		</item>
		<item>
			<title>Chief Scientific Officer (CSO), Kinetic Motion Inc.</title>
			<link>https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49457-chief-scientific-officer-cso-kinetic-motion-inc</link>
			<pubDate>Tue, 28 Apr 2026 01:10:30 GMT</pubDate>
			<description>Chief Scientific Officer (CSO) 
Kinetic Motion Inc. (KMI) | www.gaitscientific.com (http://www.gaitscientific.com/) 
Location: Remote / Hybrid /...</description>
			<content:encoded><![CDATA[<span style="font-family:Aptos"><b><span style="font-family:&amp;amp"><span style="color:#1f1f1f">Chief Scientific Officer (CSO)</span></span></b></span><br />
<span style="font-family:Aptos"><b><span style="font-family:&amp;amp"><span style="color:#1f1f1f">Kinetic Motion Inc. (KMI)</span></span></b><span style="font-family:&amp;amp"><span style="color:#1f1f1f"> | </span></span><a href="http://www.gaitscientific.com/" target="_blank"><span style="font-family:&amp;amp"><span style="color:#0b57d0">www.gaitscientific.com</span></span></a></span><br />
<span style="font-family:Aptos"><b><span style="font-family:&amp;amp"><span style="color:#1f1f1f">Location:</span></span></b><span style="font-family:&amp;amp"><span style="color:#1f1f1f"> Remote / Hybrid / Global</span></span></span> <hr /><br />
<span style="font-family:Aptos"><b><span style="font-family:&amp;amp"><span style="color:#1f1f1f">The Mission: Transforming Motion into Medicine</span></span></b></span><br />
<span style="font-family:Aptos"><span style="font-family:&amp;amp"><span style="color:#1f1f1f">The rehabilitation market is currently limited by the &quot;trained eye,&quot; which cannot quantify the micro-instabilities that lead to catastrophic falls and chronic musculoskeletal (MSK) decline. <b>Kinetic Motion Inc. (KMI)</b> is closing this gap by turning standard <b>GoPro cameras</b> into a clinical-grade diagnostic tool.</span></span></span><br />
<br />
<span style="font-family:Aptos"><span style="font-family:&amp;amp"><span style="color:#1f1f1f">We have developed a <b>first-in-kind AI engine</b> that transforms a 10-second video into a comprehensive gait assessment. We aren't just &quot;tracking&quot; movement; we are effectively decoding the &quot;mechanical engine&quot; of movement to optimize recovery and prevent injury.</span></span></span><br />
<br />
<span style="font-family:Aptos"><b><span style="font-family:&amp;amp"><span style="color:#1f1f1f">Technology: Precision at Scale</span></span></b></span><br />
<span style="font-family:Aptos"><span style="font-family:&amp;amp"><span style="color:#1f1f1f">While traditional analysis requires a specialized lab, our AI engine delivers professional insights from high-resolution GoPro camera videos. We provide a complete picture of how the body functions in the real world:</span></span></span><ul><li><span style="color:#1f1f1f"><span style="font-family:Aptos"><b><span style="font-family:&amp;amp">Targeted Pain Relief:</span></b><span style="font-family:&amp;amp"> Our platform pinpoints the hidden pressures that cause joint wear and tear. By identifying these stress points, we can shift the load away from painful areas, stopping chronic pain at its source.</span></span></span></li>
<li><span style="color:#1f1f1f"><span style="font-family:Aptos"><b><span style="font-family:&amp;amp">Early Warning Detection:</span></b><span style="font-family:&amp;amp"> We catch &quot;invisible&quot; signs of decline&#8212;like subtle imbalances or hidden instabilities&#8212;long before they lead to a visible limp or a dangerous fall.</span></span></span></li>
<li><span style="color:#1f1f1f"><span style="font-family:Aptos"><b><span style="font-family:&amp;amp">Optimized Recovery:</span></b><span style="font-family:&amp;amp"> We turn traditional movement into personalized, data-driven recovery plans. By refining how you move, we speed up post-surgery healing and restore lasting confidence in your mobility.</span></span></span></li>
</ul><hr /><br />
<span style="font-family:Aptos"><b><span style="font-family:&amp;amp"><span style="color:#1f1f1f">The Role: Architect of Movement Intelligence</span></span></b></span><br />
<span style="font-family:Aptos"><span style="font-family:&amp;amp"><span style="color:#1f1f1f">As CSO, you will be the final authority on the integrity and accuracy of our platform. You will lead a visionary team to translate complex kinematic, kinetic, and physiological data into <b>tailored treatment plans</b> for high-volume patient populations, with a focus on the Medicare Advantage and value-based care markets.</span></span></span><br />
<br />
<span style="font-family:Aptos"><b><span style="font-family:&amp;amp"><span style="color:#1f1f1f">Key Responsibilities</span></span></b></span><ul><li><span style="color:#1f1f1f"><span style="font-family:Aptos"><b><span style="font-family:&amp;amp">Model Development:</span></b><span style="font-family:&amp;amp"> Lead the creation of predictive algorithms for fall risk and MSK decline using markerless 3D skeletal visualization.</span></span></span></li>
<li><span style="color:#1f1f1f"><span style="font-family:Aptos"><b><span style="font-family:&amp;amp">Clinical Strategy:</span></b><span style="font-family:&amp;amp"> Design large-scale validation studies to prove our impact on patient outcomes and quality-of-care metrics.</span></span></span></li>
<li><span style="color:#1f1f1f"><span style="font-family:Aptos"><b><span style="font-family:&amp;amp">Strategic Leadership:</span></b><span style="font-family:&amp;amp"> Oversee the evolution of our diagnostic suites, ensuring they provide insights&#8212;such as joint-level deviations&#8212;that are invisible to human observation.</span></span></span></li>
<li><span style="color:#1f1f1f"><span style="font-family:Aptos"><b><span style="font-family:&amp;amp">Industry Liaison:</span></b><span style="font-family:&amp;amp"> Represent KMI to regulatory bodies and the global orthopedic and rehabilitation community.</span></span></span></li>
</ul><br />
<span style="font-family:Aptos"><b><span style="font-family:&amp;amp"><span style="color:#1f1f1f">Requirements</span></span></b></span><ul><li><span style="color:#1f1f1f"><span style="font-family:Aptos"><b><span style="font-family:&amp;amp">PhD in Biomechanics, Biomedical Engineering, or Kinesiology</span></b><span style="font-family:&amp;amp"> with a focus on human movements.</span></span></span></li>
<li><span style="color:#1f1f1f"><span style="font-family:Aptos"><b><span style="font-family:&amp;amp">Expertise in Human Locomotion &amp; Physics:</span></b><span style="font-family:&amp;amp"> Deep understanding of the physics of human locomotion and multi-joint coordination.</span></span></span></li>
<li><span style="color:#1f1f1f"><span style="font-family:Aptos"><b><span style="font-family:&amp;amp">Technical Fluency:</span></b><span style="font-family:&amp;amp"> Experience with AI/ML neural networks, computer vision, or wearable sensor integration.</span></span></span></li>
<li><span style="color:#1f1f1f"><span style="font-family:Aptos"><b><span style="font-family:&amp;amp">Entrepreneurial Mindset:</span></b><span style="font-family:&amp;amp"> The desire to lead a high-growth startup from high-level research to a global commercial enterprise.</span></span></span></li>
</ul><hr /><br />
<span style="font-family:Aptos"><b><span style="font-family:&amp;amp"><span style="color:#1f1f1f">Why Join Kinetic Motion Inc.?</span></span></b></span><ul><li><span style="color:#1f1f1f"><span style="font-family:Aptos"><b><span style="font-family:&amp;amp">Unprecedented Impact:</span></b><span style="font-family:&amp;amp"> Directly influences the care of over one million patients through existing healthcare partnerships.</span></span></span></li>
<li><span style="color:#1f1f1f"><span style="font-family:Aptos"><b><span style="font-family:&amp;amp">Scale and Innovation:</span></b><span style="font-family:&amp;amp"> Lead a company that is turning &quot;video into a vital sign,&quot; making clinical-grade analysis accessible anywhere.</span></span></span></li>
<li><span style="color:#1f1f1f"><span style="font-family:Aptos"><b><span style="font-family:&amp;amp">Financial Upside:</span></b><span style="font-family:&amp;amp"> Significant <b>Equity Options</b> in a high-growth company with established reimbursement pathways and high-margin scalability.</span></span></span></li>
<li><span style="color:#1f1f1f"><span style="font-family:Aptos"><b><span style="font-family:&amp;amp">Global Reach:</span></b><span style="font-family:&amp;amp"> Help restore mobility and independence to an aging population by redefining the standard of MSK care.</span></span></span></li>
</ul><hr /><br />
<span style="font-family:Aptos"><b><span style="font-family:&amp;amp"><span style="color:#1f1f1f">Apply to Lead the Revolution</span></span></b></span><br />
<span style="font-family:Aptos"><span style="font-family:&amp;amp"><span style="color:#1f1f1f">If you are ready to move beyond the lab and define the future of precision health, we want to hear from you.</span></span></span><br />
<span style="font-family:Aptos"><b><span style="font-family:&amp;amp"><span style="color:#1f1f1f">To Apply:</span></span></b><span style="font-family:&amp;amp"><span style="color:#1f1f1f"> Submit your CV and a cover letter to </span></span><a href="mailto:hr@gaitscientific.com"><span style="font-family:&amp;amp">hr@gaitscientific.com</span></a><span style="font-family:&amp;amp"><span style="color:#1f1f1f"> or via our <b>online form. Please</b> visit </span></span><a href="http://www.gaitscientific.com/" target="_blank"><span style="font-family:&amp;amp"><span style="color:#0b57d0">http://www.gaitscientific.com/index.php/company/</span></span></a></span><br />
<br />
<span style="font-family:Aptos"><b><span style="font-family:&amp;amp"><span style="color:#1f1f1f">Kinetic Motion Inc.</span></span></b></span><br />
<span style="font-family:Aptos"><i><span style="font-family:&amp;amp"><span style="color:#1f1f1f">Precision in Motion. Certainty in Care.</span></span></i></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>Marcus Hollis, PhD</dc:creator>
			<guid isPermaLink="true">https://biomch-l.isbweb.org/forum/biomch-l-forums/jobs-and-positions/49457-chief-scientific-officer-cso-kinetic-motion-inc</guid>
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