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Variability in isometric force and moment generating capacity of glenohumeral external rotator muscles

机译:盂肱外旋转肌的等距力和力矩产生能力的变化

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摘要

Background. Muscles which cause glenohumeral external rotation possess varying ability for generating force and moment due to differences in muscle architecture, moment arm, and the interaction of these two factors. This study’s purpose was to determine a complete dataset of muscle-tendon parameters for predicting the moment generating capacity and force-length dependence for external rotation of infraspinatus, supraspinatus and teres minor muscles.Methods. Muscle fascicle length, sarcomere length, pennation angle, and muscle volume were measured for sub-regions of infraspinatus and supraspinatus, and teres minor from 10 glenohumeral specimens. Tendon excursion was measured for glenohumeral rotation. From these parameter measurements, optimal fascicle length, physiological cross-sectional area, muscle force-length dependence, and maximum isometric moment generating capacity were calculated.Findings. Substantial differences were found for optimal muscle length, physiologic cross-sectional area, and tendon length for the 10 specimens of this study. Muscle sub-region had a significant effect on the force-length relationship for infraspinatus (P < 0.001), but was not significant for supraspinatus (P = 0.49). For infraspinatus and supraspinatus, maximum isometric rotation moment capacity was greater at 10° versus 60° abduction (P < 0.001). Maximum isometric rotation moment capacity for the teres minor was greater at 10° versus 60° abduction (P < 0.01). Sub-regions demonstrated significant differences in isometric moment capacity (P < 0.001).Interpretation. Functional capabilities of these muscles depend on muscle architecture and moment arm as well as their combined effects. The results allow for development of stochastic and deterministic models of glenohumeral external rotation strength which can be used for prediction of muscle forces and joint moments.
机译:背景。由于肌肉结构,力矩臂以及这两个因素的相互作用,导致盂肱外旋的肌肉具有不同的产生力和力矩的能力。这项研究的目的是确定一个完整的肌肉肌腱参数数据集,以预测下脊柱肌,腕上肌和小腿畸形肌外旋转的力矩产生能力和力长相关性。从10例肱骨肱骨标本中测量了腓骨下肌和棘上肌以及次要肌的子区域的肌肉束长度,肌节长度,垂体角度和肌肉体积。测量了肌腱旋转的肌腱偏移。通过这些参数测量,可以计算出最佳的束长度,生理截面积,肌力长度依赖性和最大等距矩产生能力。对于该研究的10个样本,发现最佳肌肉长度,生理横截面积和肌腱长度存在显着差异。肌肉亚区域对棘下肌的力长关系有显着影响(P <0.001),而对棘上肌则无显着影响(P = 0.49)。对于棘下肌和棘上肌,最大等距旋转力矩能力在10°外展时比60°外展时更大(P <0.001)。小畸胎的最大等距旋转力矩能力在10°与60°外展时相比更大(P <0.01)。次区域在等距矩承载力上显示出显着差异(P <0.001)。这些肌肉的功能能力取决于肌肉结构和力矩臂以及它们的综合作用。结果允许建立盂肱外旋强度的随机和确定性模型,该模型可用于预测肌肉力和关节力矩。

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