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  <title type="text">Multidisciplinary Biomechanics Journal</title>
  <subtitle type="text">Multidisciplinary Biomechanics Journal: latest publications</subtitle>
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  <updated>2026-06-02T17:35:09+00:00</updated>
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  <entry>
    <title type="html"><![CDATA[Effect of Camera Position on the Robustness of a 2D Markerless Motion Capture System for Assessing Shoulder Kinematics]]></title>
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    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17936"/>
    <id>https://doi.org/10.46298/mbj.17936</id>
    <author>
      <name>Perek, Maxime</name>
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      <name>Blache, Yoann</name>
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    <author>
      <name>Lefebvre, Felix</name>
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      <name>Rogowski, Isabelle</name>
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      <name>Guignard, Brice</name>
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    <category term="Deep Neural Network" label="Deep Neural Network"/>
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  <entry>
    <title type="html"><![CDATA[A unified human-robot simulation enables modulation of Supraspinatus muscle activation]]></title>
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    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17938"/>
    <id>https://doi.org/10.46298/mbj.17938</id>
    <author>
      <name>Schegg, Pierre</name>
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    <author>
      <name>Puchaud, Pierre</name>
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    <author>
      <name>Bailly, François</name>
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    <category term="Supraspinatus" label="Supraspinatus"/>
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  <entry>
    <title type="html"><![CDATA[Effects of perceived shoulder dysfunction on shoulder biomechanics during Upper Quarter Y-Balance Test (YBT)]]></title>
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    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17918"/>
    <id>https://doi.org/10.46298/mbj.17918</id>
    <author>
      <name>Loiseau, Robin</name>
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    <author>
      <name>Blache, Yoann</name>
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    <author>
      <name>Arnould, Théo</name>
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    <author>
      <name>Filliard, Mélick</name>
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    <author>
      <name>Rogowski, Isabelle</name>
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    <category term="Physical Performance Testing" label="Physical Performance Testing"/>
    <category term="Western Ontario Shoulder Instability questionnaire" label="Western Ontario Shoulder Instability questionnaire"/>
    <category term="Upper limb" label="Upper limb"/>
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  <entry>
    <title type="html"><![CDATA[Characterisation of variability and investigation of factors influencing maximum coronal abduction and forward elevation in post-operative rTSA subjects]]></title>
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    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17922"/>
    <id>https://doi.org/10.46298/mbj.17922</id>
    <author>
      <name>Herbst, Eva</name>
    </author>
    <author>
      <name>van Beurden, Maartje</name>
    </author>
    <author>
      <name>Henninger, Heath</name>
    </author>
    <author>
      <name>Ferguson, Stephen</name>
    </author>
    <author>
      <name>Moroder, Philipp</name>
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    <category term="reverse total shoulder arthroplasty" label="reverse total shoulder arthroplasty"/>
    <category term="range of motion" label="range of motion"/>
    <category term="humeral elevation" label="humeral elevation"/>
    <category term="posture" label="posture"/>
    <category term="biplanar fluoroscopy" label="biplanar fluoroscopy"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
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  <entry>
    <title type="html"><![CDATA[Patient-Specific Reconstruction of Shoulder Anatomy Driven by Radiographic Anatomical Parameters Using Statistical Shape Modelling]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17933"/>
    <id>https://doi.org/10.46298/mbj.17933</id>
    <author>
      <name>Mareschal, Lisa</name>
    </author>
    <author>
      <name>Genter, Jeremy</name>
    </author>
    <author>
      <name>Croci, Eleonora</name>
    </author>
    <author>
      <name>Gascho, Dominic</name>
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    <author>
      <name>Deininger-Czermak, Eva</name>
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    <author>
      <name>Mündermann, Annegret</name>
    </author>
    <author>
      <name>Seth, Ajay</name>
    </author>
    <author>
      <name>Müller, Andreas</name>
    </author>
    <author>
      <name>Baumgartner, Daniel</name>
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    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="Statistical shape modelling (SSM)" label="Statistical shape modelling (SSM)"/>
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    <category term="humerus" label="humerus"/>
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  <entry>
    <title type="html"><![CDATA[Trapezius excitation is altered without kinematic differences in asymptomatic scapular dyskinesis]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17925"/>
    <id>https://doi.org/10.46298/mbj.17925</id>
    <author>
      <name>Bohunicky, Sarah</name>
    </author>
    <author>
      <name>Bergen, Brad</name>
    </author>
    <author>
      <name>Lang, Angelica</name>
    </author>
    <author>
      <name>Scribbans, Trisha</name>
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    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="muscle excitation" label="muscle excitation"/>
    <category term="shoulder" label="shoulder"/>
    <category term="arm elevation" label="arm elevation"/>
    <category term="electromyography" label="electromyography"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[Can the combination of motion tracking and virtual reality make shoulder rehabilitation entertaining?]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17919"/>
    <id>https://doi.org/10.46298/mbj.17919</id>
    <author>
      <name>Mancuso, Matteo</name>
    </author>
    <author>
      <name>Lädermann, Alexandre</name>
    </author>
    <author>
      <name>Schmid Dornbierer, Yves</name>
    </author>
    <author>
      <name>Seurot, Antoine</name>
    </author>
    <author>
      <name>Charbonnier, Caecilia</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="shoulder" label="shoulder"/>
    <category term="motion capture" label="motion capture"/>
    <category term="virtual reality" label="virtual reality"/>
    <category term="functional assessment" label="functional assessment"/>
    <category term="physical rehabilitation" label="physical rehabilitation"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[Inter-and Intra-rater Reliability of the Shoulder Isometric Force Test (SHIFT) Protocol]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17942"/>
    <id>https://doi.org/10.46298/mbj.17942</id>
    <author>
      <name>Minder, Ursina</name>
    </author>
    <author>
      <name>Perret, Claudio</name>
    </author>
    <author>
      <name>de Vries, Wiebe</name>
    </author>
    <author>
      <name>Koch-Borner, Sabrina</name>
    </author>
    <author>
      <name>Arnet, Ursina</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="robustness" label="robustness"/>
    <category term="measurement error" label="measurement error"/>
    <category term="strength assessment" label="strength assessment"/>
    <category term="shoulder pain" label="shoulder pain"/>
    <category term="wheelchair users" label="wheelchair users"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[Restoring Dynamic Shoulder Stability: Insights from the MoveUS Program]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17928"/>
    <id>https://doi.org/10.46298/mbj.17928</id>
    <author>
      <name>Ramírez-Pérez, Laura</name>
    </author>
    <author>
      <name>del Carmen Martín-Molina, María</name>
    </author>
    <author>
      <name>Cuesta-Vargas, Antonio</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="shoulder" label="shoulder"/>
    <category term="joint instability" label="joint instability"/>
    <category term="exercise" label="exercise"/>
    <category term="physical endurance" label="physical endurance"/>
    <category term="functional status" label="functional status"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[Statistical parameter mapping analysis of trunk, shoulder girdle, and shoulder kinematic alterations associated with body armor]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17929"/>
    <id>https://doi.org/10.46298/mbj.17929</id>
    <author>
      <name>Riemann, Bryan</name>
    </author>
    <author>
      <name>John, Sandra</name>
    </author>
    <author>
      <name>Williams, Emma</name>
    </author>
    <author>
      <name>Kardouni, Joseph</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="scapula" label="scapula"/>
    <category term="clavicular" label="clavicular"/>
    <category term="glenohumeral" label="glenohumeral"/>
    <category term="tactical athlete" label="tactical athlete"/>
    <category term="military" label="military"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[A novel workflow for in vivo assessment of glenohumeral contact patterns following anatomic total shoulder arthroplasty using biplanar radiography]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17930"/>
    <id>https://doi.org/10.46298/mbj.17930</id>
    <author>
      <name>Daneshvarhashjin, Nazanin</name>
    </author>
    <author>
      <name>Jansen, Laurens</name>
    </author>
    <author>
      <name>Debeer, Philippe</name>
    </author>
    <author>
      <name>Verhaegen, Filip</name>
    </author>
    <author>
      <name>Scheys, Lennart</name>
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    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="anatomic total shoulder arthroplasty" label="anatomic total shoulder arthroplasty"/>
    <category term="glenoid component loosening" label="glenoid component loosening"/>
    <category term="in vivo contact patterns" label="in vivo contact patterns"/>
    <category term="automated workflow" label="automated workflow"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
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  <entry>
    <title type="html"><![CDATA[Cost function choice matters in functional electrical stimulation hand-cycling exercise duration]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17923"/>
    <id>https://doi.org/10.46298/mbj.17923</id>
    <author>
      <name>Co, Kevin</name>
    </author>
    <author>
      <name>Puchaud, Pierre</name>
    </author>
    <author>
      <name>Moissenet, Florent</name>
    </author>
    <author>
      <name>Begon, Mickaël</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="Predictive simulation" label="Predictive simulation"/>
    <category term="Musculoskeletal shoulder modeling" label="Musculoskeletal shoulder modeling"/>
    <category term="Muscle Fatigue" label="Muscle Fatigue"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[Muscle activation synergies and contributions to shoulder torques across testing positions]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17932"/>
    <id>https://doi.org/10.46298/mbj.17932</id>
    <author>
      <name>Croci, Eleonora</name>
    </author>
    <author>
      <name>Nüesch, Corina</name>
    </author>
    <author>
      <name>Maier, Dirk</name>
    </author>
    <author>
      <name>Müller, Andreas</name>
    </author>
    <author>
      <name>Mündermann, Annegret</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="Electromyography" label="Electromyography"/>
    <category term="torque" label="torque"/>
    <category term="positions" label="positions"/>
    <category term="rotation" label="rotation"/>
    <category term="flexion" label="flexion"/>
    <category term="abduction" label="abduction"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[A Novel Workflow for Personalized Shoulder Modeling to Compute Glenohumeral Joint Loading in Shoulder Osteoarthritis and Anatomic Total Shoulder Arthroplasty Cohorts]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17924"/>
    <id>https://doi.org/10.46298/mbj.17924</id>
    <author>
      <name>Ven, Line</name>
    </author>
    <author>
      <name>Daneshvarhashjin, Nazanin</name>
    </author>
    <author>
      <name>Debeer, Philippe</name>
    </author>
    <author>
      <name>Verhaegen, Filip</name>
    </author>
    <author>
      <name>Scheys, Lennart</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="personalized musculoskeletal shoulder modeling" label="personalized musculoskeletal shoulder modeling"/>
    <category term="glenohumeral joint reaction loads" label="glenohumeral joint reaction loads"/>
    <category term="humeral head translations" label="humeral head translations"/>
    <category term="glenohumeral osteoarthritis" label="glenohumeral osteoarthritis"/>
    <category term="anatomic total shoulder arthroplasty" label="anatomic total shoulder arthroplasty"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[Prediction of Deltoid Muscle Force in Reverse Total Shoulder Arthroplasty Using a Deep Learning Model]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17939"/>
    <id>https://doi.org/10.46298/mbj.17939</id>
    <author>
      <name>Pistorius, Léa</name>
    </author>
    <author>
      <name>Pioletti, Dominique</name>
    </author>
    <author>
      <name>Terrier, Alexandre</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="reverse total shoulder arthroplasty" label="reverse total shoulder arthroplasty"/>
    <category term="deltoid muscle force" label="deltoid muscle force"/>
    <category term="musculoskeletal model" label="musculoskeletal model"/>
    <category term="deep learning model" label="deep learning model"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[Volumetric Muscle Modelling for Physiological Testing of the Glenohumeral Joint]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17940"/>
    <id>https://doi.org/10.46298/mbj.17940</id>
    <author>
      <name>Abraham, Molly</name>
    </author>
    <author>
      <name>Genter, Jeremy</name>
    </author>
    <author>
      <name>Polizzotto, Maria</name>
    </author>
    <author>
      <name>Andrei, Federico</name>
    </author>
    <author>
      <name>Paternò, Linda</name>
    </author>
    <author>
      <name>Baumgartner, Daniel</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="biomechanics" label="biomechanics"/>
    <category term="glenohumeral joint" label="glenohumeral joint"/>
    <category term="muscle forces" label="muscle forces"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[Greater Shoulder Elevation Variability During Arm Cocking Is Associated With Decreased Elbow Varus Torque in NCAA Division I Baseball Pitchers]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17931"/>
    <id>https://doi.org/10.46298/mbj.17931</id>
    <author>
      <name>Oliver, Gretchen</name>
    </author>
    <author>
      <name>Cheng, Kai-Jen</name>
    </author>
    <author>
      <name>Jump, Ian</name>
    </author>
    <author>
      <name>Zappa, Ryan</name>
    </author>
    <author>
      <name>Chavarria, Kevin</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="Shoulder Elevation" label="Shoulder Elevation"/>
    <category term="UCL" label="UCL"/>
    <category term="Shoulder ElevationRMS Deviation" label="Shoulder ElevationRMS Deviation"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[Finding the best calibration poses for shoulder rhythm personalization in a computational shoulder model]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17920"/>
    <id>https://doi.org/10.46298/mbj.17920</id>
    <author>
      <name>Maier, Jennifer</name>
    </author>
    <author>
      <name>Saevarsson, Trausti</name>
    </author>
    <author>
      <name>Farewik, Lanie</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="shoulder model" label="shoulder model"/>
    <category term="personalization" label="personalization"/>
    <category term="calibration" label="calibration"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[Inverse kinematics of the closed-loop shoulder: Quadratic Programming is faster than Interior-Point methods with equivalent accuracy]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17921"/>
    <id>https://doi.org/10.46298/mbj.17921</id>
    <author>
      <name>Puchaud, Pierre</name>
    </author>
    <author>
      <name>Millan, Mégane</name>
    </author>
    <author>
      <name>Joseph, Lucas</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="quadratic progamming" label="quadratic progamming"/>
    <category term="inverse kinematics" label="inverse kinematics"/>
    <category term="close-loop" label="close-loop"/>
    <category term="constraints" label="constraints"/>
    <category term="optimization" label="optimization"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[Patient-Specific Musculoskeletal Model of the Shoulder: Kinematics Comparison of Linear Scaling and Statistical Shape Model Scaling]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17937"/>
    <id>https://doi.org/10.46298/mbj.17937</id>
    <author>
      <name>Genter, Jeremy</name>
    </author>
    <author>
      <name>Croci, Eleonora</name>
    </author>
    <author>
      <name>Seth, Ajay</name>
    </author>
    <author>
      <name>Mareschal, Lisa</name>
    </author>
    <author>
      <name>Gascho, Dominic</name>
    </author>
    <author>
      <name>Deininger-Czermak, Eva</name>
    </author>
    <author>
      <name>Müller, Andreas</name>
    </author>
    <author>
      <name>Mündermann, Annegret</name>
    </author>
    <author>
      <name>Baumgartner, Daniel</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="Statistical shape modeling (SSM)" label="Statistical shape modeling (SSM)"/>
    <category term="musculoskeletal modeling" label="musculoskeletal modeling"/>
    <category term="shoulder" label="shoulder"/>
    <category term="patientspecific models" label="patientspecific models"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[Preliminary evaluation of the kinematics of a shoulder musculoskeletal model during arm abduction]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17934"/>
    <id>https://doi.org/10.46298/mbj.17934</id>
    <author>
      <name>Bousigues, Sandrine</name>
    </author>
    <author>
      <name>Duprey, Sonia</name>
    </author>
    <author>
      <name>Guitteny, Sacha</name>
    </author>
    <author>
      <name>Dumas, Raphael</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="biplane x-rays" label="biplane x-rays"/>
    <category term="inverse kinematics" label="inverse kinematics"/>
    <category term="skin markers" label="skin markers"/>
    <category term="soft tissue artefact" label="soft tissue artefact"/>
    <category term="kinematic constraints" label="kinematic constraints"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[Robustness of a five-landmark predictive model for the glenohumeral rotation center to simulate ultrasound localization errors: a Monte-Carlo and individual perturbation analysis]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17935"/>
    <id>https://doi.org/10.46298/mbj.17935</id>
    <author>
      <name>St-Pierre, Marc-Olivier</name>
    </author>
    <author>
      <name>Paquette, Philippe</name>
    </author>
    <author>
      <name>Desroches, Guillaume</name>
    </author>
    <author>
      <name>Aissaoui, Rachid</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="shoulder" label="shoulder"/>
    <category term="center of rotation" label="center of rotation"/>
    <category term="glenohumeral" label="glenohumeral"/>
    <category term="regression" label="regression"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[Interest of the Upper Quarter Y-Balance Test for Assessing Upper-Extremity Force Capacity in Multisport Athletes]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17927"/>
    <id>https://doi.org/10.46298/mbj.17927</id>
    <author>
      <name>De Sousa, Thomas</name>
    </author>
    <author>
      <name>Rogowski, Isabelle</name>
    </author>
    <author>
      <name>Blache, Yoann</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="Physical performance test" label="Physical performance test"/>
    <category term="Assessment" label="Assessment"/>
    <category term="Athletes" label="Athletes"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[Changes in EMG-angle relationships following reverse total shoulder arthroplasty]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17926"/>
    <id>https://doi.org/10.46298/mbj.17926</id>
    <author>
      <name>Francalanci, Hugo</name>
    </author>
    <author>
      <name>Holzer, Nicolas</name>
    </author>
    <author>
      <name>Cherni, Yosra</name>
    </author>
    <author>
      <name>Moissenet, Florent</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="Reverse total shoulder arthroplasty" label="Reverse total shoulder arthroplasty"/>
    <category term="Rotator cuff tear" label="Rotator cuff tear"/>
    <category term="Motor control" label="Motor control"/>
    <category term="Kinematics" label="Kinematics"/>
    <category term="Electromyography" label="Electromyography"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[Impact of the posturestanding or sitting -on the kinematics of the violinist's right upper limb]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17941"/>
    <id>https://doi.org/10.46298/mbj.17941</id>
    <author>
      <name>Roy, Amélie</name>
    </author>
    <author>
      <name>Naaim, Alexandre</name>
    </author>
    <author>
      <name>Hoegy, Thomas</name>
    </author>
    <author>
      <name>Verdugo, Felipe</name>
    </author>
    <author>
      <name>Duprey, Sonia</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="violin" label="violin"/>
    <category term="kinematics" label="kinematics"/>
    <category term="motion analysis" label="motion analysis"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[The Relationship Between Biceps Activity and Shoulder Eccentric External Rotation Torque]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2026-06-01T20:36:01+00:00</published>
    <updated>2026-06-01T20:36:01+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.17943"/>
    <id>https://doi.org/10.46298/mbj.17943</id>
    <author>
      <name>Washatka, Jonathan</name>
    </author>
    <author>
      <name>Rincher, Mara-Paige</name>
    </author>
    <author>
      <name>Banuach, Alec</name>
    </author>
    <author>
      <name>Roe, Olivia</name>
    </author>
    <author>
      <name>Staker, Justin</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="Electromyography" label="Electromyography"/>
    <category term="biceps" label="biceps"/>
    <category term="torque" label="torque"/>
    <category term="eccentric" label="eccentric"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[Complement C5a-loaded scaffold for dentin-pulp regeneration]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2025-10-24T15:03:10+00:00</published>
    <updated>2025-10-24T15:03:10+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.16140"/>
    <id>https://doi.org/10.46298/mbj.16140</id>
    <author>
      <name>Bilel, Amiri</name>
    </author>
    <author>
      <name>Charlotte, Jeanneau</name>
    </author>
    <author>
      <name>Romain, Iasio</name>
    </author>
    <author>
      <name>Imad, About</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="Vital Pulp Therapy" label="Vital Pulp Therapy"/>
    <category term="Complement C5a" label="Complement C5a"/>
    <category term="Dentin Pulp Regeneration" label="Dentin Pulp Regeneration"/>
    <category term="Collagen Scaffold" label="Collagen Scaffold"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[Design of smart substrates to control cell migration: an in silico approach]]></title>
    <summary type="html"><![CDATA[...]]></summary>
    <published>2025-10-24T15:03:10+00:00</published>
    <updated>2025-10-24T15:03:10+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.16141"/>
    <id>https://doi.org/10.46298/mbj.16141</id>
    <author>
      <name>Carlin, Gildas</name>
    </author>
    <author>
      <name>Manifacier, Ian</name>
    </author>
    <author>
      <name>Moureaud, Vincent</name>
    </author>
    <author>
      <name>Berhault, Mathis</name>
    </author>
    <author>
      <name>Dotta, Ewan</name>
    </author>
    <author>
      <name>Milan, Jean-Louis</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="Cell Migration" label="Cell Migration"/>
    <category term="Curvature" label="Curvature"/>
    <category term="Persistent Random Walk Model" label="Persistent Random Walk Model"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[Studying honeybees' landing on flower: an experimental setup]]></title>
    <summary type="html"><![CDATA[Landing a helicopter on a moving ship is an error-prone operation, requiring the expertise of highly trained pilots, and benefits greatly from advanced technologies to improve decision-making and action regulation. (Thomas et al. 2021). In stark contrast, landing to forage on a flower looks to be performed with remarkable ease and under visual control in bees (Lehrer and Srinivasan 1992; de Vries et al 2025). Understanding the perceptual behavior of pilots in comparison to that of honeybees is a key driver of innovation in the design of bio-inspired robotic systems. Understanding the mechanisms behind this ability requires accurately tracking the bee’s movement during the landing task. Vision-based tracking techniques using convolutional neural networks (CNNs), such as You Only Look Once (YOLO) algorithm (Redmon et al. 2016), can be specifically trained to detect and track the honeybee-flower system. Our goal is to accurately reconstruct a known trajectory, using a fake bee as a target, with a mean tracking error less than half a centimeter, or about half the length of a honeybee (13 mm).]]></summary>
    <published>2025-10-24T15:03:10+00:00</published>
    <updated>2025-10-24T15:03:10+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.16142"/>
    <id>https://doi.org/10.46298/mbj.16142</id>
    <author>
      <name>Salvage, Nicolas</name>
    </author>
    <author>
      <name>H. P. Morice, Antoine</name>
    </author>
    <author>
      <name>R. Serres, Julien</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="3D Flight" label="3D Flight"/>
    <category term="Affordance" label="Affordance"/>
    <category term="Insect Tracking System" label="Insect Tracking System"/>
    <category term="Biolocomotion" label="Biolocomotion"/>
    <category term="Stereo Vision" label="Stereo Vision"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
    <category term="[SCCO.NEUR]Cognitive science/Neuroscience" label="[SCCO.NEUR]Cognitive science/Neuroscience"/>
    <category term="[SDV.BA.ZI]Life Sciences [q-bio]/Animal biology/Invertebrate Zoology" label="[SDV.BA.ZI]Life Sciences [q-bio]/Animal biology/Invertebrate Zoology"/>
  </entry>
  <entry>
    <title type="html"><![CDATA[The bionic Pohod15Leg leg: an exoskeletal ant-inspired leg for load transportation]]></title>
    <summary type="html"><![CDATA[Every year, numerous bio-inspired hexapod prototypes are built in various fields of research, such as navigation, social behavior and locomotion. Staying within these three fields, several hexapod robots developed over the last two decades are presented in this review (Manoonpong et al. 2021). The most common category corresponds to hexapods with a mass 0.5∼10kg. All these robots are driven by low-power electric servomotors (each consuming an electric power of around 30W). Servomotor-based hexapods are frequently used because of their low manufacturing cost 0.5∼3k€. Moreover, electric servomotors are easy to drive, as there are usually many prefabricated development boards integrating the control system. To better understand how animals work, for example, how ants run so fast or carry such a heavy load? This requires to estimate the gap between the limits of the animal model and the bio-inspired hexapod. It is therefore relevant to proceed with the hexapod design step by step, considering the current technological limits constraining the robot design process.  In this study, we will compare the level of performance of the first exoskeletal ant-inspired leg for load transportation, called Pohod15Leg, designed and fabricated to be compared to the current state-of-the-art in servomotor-based legs, i.e., a bionic leg actuated by 3 Dynamixel AX-18A servomotors, called AXLeg. These two bionic legs will be evaluated in similar experimental conditions with the same test bench, called MiMiC-ANT test bench (Brodoline et al. 2022).]]></summary>
    <published>2025-10-24T15:03:10+00:00</published>
    <updated>2025-10-24T15:03:10+00:00</updated>
    <link rel="alternate" type="text/html" href="https://doi.org/10.46298/mbj.16143"/>
    <id>https://doi.org/10.46298/mbj.16143</id>
    <author>
      <name>R. Serres, Julien</name>
    </author>
    <author>
      <name>Brodoline, Ilya</name>
    </author>
    <author>
      <name>Viollet, Stéphane</name>
    </author>
    <category term="Multidisciplinary Biomechanics Journal" label="Multidisciplinary Biomechanics Journal"/>
    <category term="Biorobotics" label="Biorobotics"/>
    <category term="Locomotion" label="Locomotion"/>
    <category term="Bionics" label="Bionics"/>
    <category term="Hexapod" label="Hexapod"/>
    <category term="Legged Robotics" label="Legged Robotics"/>
    <category term="Bio-Inspired Robotics" label="Bio-Inspired Robotics"/>
    <category term="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]" label="[PHYS.MECA.BIOM]Physics [physics]/Mechanics [physics]/Biomechanics [physics.med-ph]"/>
    <category term="[SPI.AUTO]Engineering Sciences [physics]/Automatic" label="[SPI.AUTO]Engineering Sciences [physics]/Automatic"/>
  </entry>
</feed>
