Stephen Thomas

 Stephen Thomas

Stephen J. Thomas

  • Courses2
  • Reviews5
Jan 18, 2020
N/A
Textbook used: No
Would take again: Yes
For Credit: Yes

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Difficulty
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Helpfulness

Awesome

Professor Thomas is an overall great professor and a nice guy. The exams are based on the PowerPoints so if you do not understand something, go to his office hours. The lab is simple and counts for a good amount of your grade. The exams are decent but the final was very hard.

Biography

Temple University - Kinesiology



Experience

  • Neumann University

    Assistant Professor

    Stephen worked at Neumann University as a Assistant Professor

  • University of Delaware

    PhD student

    Stephen worked at University of Delaware as a PhD student

  • Temple University

    Assistant Professor

    Stephen worked at Temple University as a Assistant Professor

  • Avid Alexander

    Chief Scientist

    Stephen worked at Avid Alexander as a Chief Scientist

  • University of Pennsylvania

    Post Doc

    Stephen worked at University of Pennsylvania as a Post Doc

Education

  • University of Delaware

    PhD

    Biomechanics

  • University of Delaware

    PhD student



  • Temple University

    Assistant Professor



Publications

  • Disruption of the Anterior-Posterior Rotator Cuff Force Balance Alters Joint Function and Leads to Joint Damage in a Rat Model

    Journal of Orthopaedic Research

    We investigated the effect of disrupting the anterior-posterior force balance on joint function and joint damage in an overuse rat model.

  • Disruption of the Anterior-Posterior Rotator Cuff Force Balance Alters Joint Function and Leads to Joint Damage in a Rat Model

    Journal of Orthopaedic Research

    We investigated the effect of disrupting the anterior-posterior force balance on joint function and joint damage in an overuse rat model.

  • Disruption of the Anterior-Posterior Rotator Cuff Force Balance Alters Joint Function and Leads to Joint Damage in a Rat Model

    Journal of Orthopaedic Research

    We investigated the effect of disrupting the anterior-posterior force balance on joint function and joint damage in an overuse rat model.

  • Disruption of the Anterior-Posterior Rotator Cuff Force Balance Alters Joint Function and Leads to Joint Damage in a Rat Model

    Journal of Orthopaedic Research

    We investigated the effect of disrupting the anterior-posterior force balance on joint function and joint damage in an overuse rat model.

  • Restoration of anterior-posterior rotator cuff force balance improves shoulder function in a rat model of chronic massive tears

    Journal of Orthopaedic Research

  • Disruption of the Anterior-Posterior Rotator Cuff Force Balance Alters Joint Function and Leads to Joint Damage in a Rat Model

    Journal of Orthopaedic Research

    We investigated the effect of disrupting the anterior-posterior force balance on joint function and joint damage in an overuse rat model.

  • Disruption of the Anterior-Posterior Rotator Cuff Force Balance Alters Joint Function and Leads to Joint Damage in a Rat Model

    Journal of Orthopaedic Research

    We investigated the effect of disrupting the anterior-posterior force balance on joint function and joint damage in an overuse rat model.

  • Restoration of anterior-posterior rotator cuff force balance improves shoulder function in a rat model of chronic massive tears

    Journal of Orthopaedic Research

  • Analysis of Collagen Organization in Mouse Achilles Tendon Using High-Frequency Ultrasound Imaging

    Journal of Biomechanical Engineering

  • Disruption of the Anterior-Posterior Rotator Cuff Force Balance Alters Joint Function and Leads to Joint Damage in a Rat Model

    Journal of Orthopaedic Research

    We investigated the effect of disrupting the anterior-posterior force balance on joint function and joint damage in an overuse rat model.

  • Disruption of the Anterior-Posterior Rotator Cuff Force Balance Alters Joint Function and Leads to Joint Damage in a Rat Model

    Journal of Orthopaedic Research

    We investigated the effect of disrupting the anterior-posterior force balance on joint function and joint damage in an overuse rat model.

  • Restoration of anterior-posterior rotator cuff force balance improves shoulder function in a rat model of chronic massive tears

    Journal of Orthopaedic Research

  • Analysis of Collagen Organization in Mouse Achilles Tendon Using High-Frequency Ultrasound Imaging

    Journal of Biomechanical Engineering

  • Effect of scapular dyskinesis on supraspinatus repair healing in a rat model

    J Shoulder Elbow Surg

  • Disruption of the Anterior-Posterior Rotator Cuff Force Balance Alters Joint Function and Leads to Joint Damage in a Rat Model

    Journal of Orthopaedic Research

    We investigated the effect of disrupting the anterior-posterior force balance on joint function and joint damage in an overuse rat model.

  • Disruption of the Anterior-Posterior Rotator Cuff Force Balance Alters Joint Function and Leads to Joint Damage in a Rat Model

    Journal of Orthopaedic Research

    We investigated the effect of disrupting the anterior-posterior force balance on joint function and joint damage in an overuse rat model.

  • Restoration of anterior-posterior rotator cuff force balance improves shoulder function in a rat model of chronic massive tears

    Journal of Orthopaedic Research

  • Analysis of Collagen Organization in Mouse Achilles Tendon Using High-Frequency Ultrasound Imaging

    Journal of Biomechanical Engineering

  • Effect of scapular dyskinesis on supraspinatus repair healing in a rat model

    J Shoulder Elbow Surg

  • Returning to overuse activity following a supraspinatus and infraspinatus tear leads to joint damage in a rat model.

    Journal of Biomechanics

    The objective of this study was to investigate the effect of returning to overuse activity following a supraspinatus and infraspinatus tear on shoulder function and the structural and biological properties of the intact tendons and glenoid cartilage.

  • Returning to overuse activity following a supraspinatus and infraspinatus tear leads to joint damage in a rat model.

    Journal of Biomechanics

    The objective of this study was to investigate the effect of returning to overuse activity following a supraspinatus and infraspinatus tear on shoulder function and the structural and biological properties of the intact tendons and glenoid cartilage.

  • Returning to overuse activity following a supraspinatus and infraspinatus tear leads to joint damage in a rat model.

    Journal of Biomechanics

    The objective of this study was to investigate the effect of returning to overuse activity following a supraspinatus and infraspinatus tear on shoulder function and the structural and biological properties of the intact tendons and glenoid cartilage.

  • Disruption of the Anterior-Posterior Rotator Cuff Force Balance Alters Joint Function and Leads to Joint Damage in a Rat Model

    Journal of Orthopaedic Research

    We investigated the effect of disrupting the anterior-posterior force balance on joint function and joint damage in an overuse rat model.

  • Disruption of the Anterior-Posterior Rotator Cuff Force Balance Alters Joint Function and Leads to Joint Damage in a Rat Model

    Journal of Orthopaedic Research

    We investigated the effect of disrupting the anterior-posterior force balance on joint function and joint damage in an overuse rat model.

  • Restoration of anterior-posterior rotator cuff force balance improves shoulder function in a rat model of chronic massive tears

    Journal of Orthopaedic Research

  • Analysis of Collagen Organization in Mouse Achilles Tendon Using High-Frequency Ultrasound Imaging

    Journal of Biomechanical Engineering

  • Effect of scapular dyskinesis on supraspinatus repair healing in a rat model

    J Shoulder Elbow Surg

  • Returning to overuse activity following a supraspinatus and infraspinatus tear leads to joint damage in a rat model.

    Journal of Biomechanics

    The objective of this study was to investigate the effect of returning to overuse activity following a supraspinatus and infraspinatus tear on shoulder function and the structural and biological properties of the intact tendons and glenoid cartilage.

  • Returning to overuse activity following a supraspinatus and infraspinatus tear leads to joint damage in a rat model.

    Journal of Biomechanics

    The objective of this study was to investigate the effect of returning to overuse activity following a supraspinatus and infraspinatus tear on shoulder function and the structural and biological properties of the intact tendons and glenoid cartilage.

  • Returning to overuse activity following a supraspinatus and infraspinatus tear leads to joint damage in a rat model.

    Journal of Biomechanics

    The objective of this study was to investigate the effect of returning to overuse activity following a supraspinatus and infraspinatus tear on shoulder function and the structural and biological properties of the intact tendons and glenoid cartilage.

  • Biceps Detachment Decreases Joint Damage in a Rotator Cuff Tear Rat Model

    Clin Orthop Relat Res

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KINS 3202

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