首页> 外文会议>Proceedings of the 4th frontiers in biomedical devices conference and exposition 2009 >BIOMECHANICAL EVALUATION OF ROTATOR CUFF TEAR PROGRESSION AND THE INFLUENCE OF PARASCAPULAR MUSCLE LOADING
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BIOMECHANICAL EVALUATION OF ROTATOR CUFF TEAR PROGRESSION AND THE INFLUENCE OF PARASCAPULAR MUSCLE LOADING

机译:转子腹肌撕裂进展的生物力学评价及其对筋骨负重的影响

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摘要

Rotator cuff tears (RCT) commonly start at the anterior insertion of the supraspinatus and have been shown to propagate posteriorly. Early detection and repair of small or medium size tears has been shown to result in better clinical outcome and structural integrity than that of large or massive tears. However, it is unknown at which stage of rotator cuff tear propagation the biomechanical environment becomes altered. Previous biomechanical studies have not considered rotator cuff propagation based on the footprint anatomy, rotational glenohumeral joint kinematics, and the influence of anatomy-based muscle loading including pectoralis major and latissmus dorsi. Therefore, the purpose of this study was to determine the relationship between progressive rotator cuff tear and glenohumeral joint biomechanics using a rotator cuff tear progression model and anatomically based muscle loading including the influence of the pectoralis major and latissmus dorsi. Our hypotheses were 1) cuff tear progression will lead to abnormal glenohumeral joint biomechanics, specifically in kinematics (rotational range of motion and the path of humeral head apex) and abduction capability and 2) the pectoralis major and latissmus dorsi muscles will act as a stabilizer of the humeral head in large or massive tear.
机译:肩袖撕裂(RCT)通常始于棘上肌的前部插入,并已显示向后传播。与大眼泪或大眼泪相比,及早发现和修复小或中等大小的眼泪可导致更好的临床结果和结构完整性。然而,未知在肩袖撕裂传播的哪个阶段生物力学环境发生改变。以前的生物力学研究并未根据脚印解剖学,旋转肱肱关节运动学以及基于解剖学的肌肉负荷(包括胸大肌和背阔肌)的影响来考虑肩袖的扩展。因此,本研究的目的是使用肩袖撕裂进展模型和基于解剖学的肌肉负荷(包括胸大肌和背阔肌的影响)确定渐进式肩袖撕裂与盂肱关节生物力学之间的关系。我们的假设是:1)袖口撕裂的进展将导致异常的肱肱关节生物力学,特别是在运动学(旋转范围和肱骨头的顶点运动)和外展能力方面;以及2)胸大肌和背阔肌将起到稳定作用肱骨头大或块状撕裂。

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  • 来源
  • 会议地点 Irvine CA(US);Irvine CA(US)
  • 作者单位

    Department of Orthopedic Surgery, Seoul National University College of Medicine, Seoul, Korea Orthopaedic Biomechanics Laboratory VA Long Beach Healthcare System and University of California, Irvine Long Beach, CA, USA;

    Orthopaedic Biomechanics Laboratory VA Long Beach Healthcare System and University of California, Irvine Long Beach, CA, USA;

    Orthopaedic Biomechanics Laboratory VA Long Beach Healthcare System and University of California, Irvine Long Beach, CA, USA;

    Orthopaedic Biomechanics Laboratory VA Long Beach Healthcare System and University of California, Irvine Long Beach, CA, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;
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