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对躯干伸肌线性长度-张力关系的支持:长度与速度肌电图-力关系的研究

Support for a linear length-tension relation of the torso extensor muscles: an investigation of the length and velocity EMG-force relationships.

作者信息

Raschke U, Chaffin D B

机构信息

Department of Industrial and Operations Engineering, University of Michigan, USA.

出版信息

J Biomech. 1996 Dec;29(12):1597-604.

PMID:8945658
Abstract

This study investigated the hypothesis that the length-tension relation of the torso erectors would be linear, mirroring the observed linear increase in extension strength capability toward full flexion. The effect of torso extension velocity on the tension capability of these muscles was also investigated for common motion speeds. A myoelectric-based approach was used wherein a dynamic biomechanical model incorporating active and passive tissue characteristics provided muscle kinematic estimates during controlled sagittal plane extension motions. A double linear optimization formulation from the literature provided muscle tension estimates. The data of five male subjects supported the hypothesis of a linear length-tension relation toward full flexion for both the erector spinae and latissimus muscles. Velocity trends agreed with the predicted by Hill's exponential relation, although linear trends were found to fit the data almost as well. The results have implications for muscle tension estimation in biomechanical torso modeling, and suggest a possible low back pain injury mechanism through tissue strain while lifting in fully flexed postures.

摘要

本研究调查了以下假设

躯干竖脊肌的长度-张力关系将呈线性,这与观察到的向完全屈曲方向伸展力量能力的线性增加情况相符。还针对常见运动速度研究了躯干伸展速度对这些肌肉张力能力的影响。采用了一种基于肌电的方法,其中一个结合了主动和被动组织特征的动态生物力学模型在受控矢状面伸展运动期间提供肌肉运动学估计。文献中的双线性优化公式提供了肌肉张力估计。五名男性受试者的数据支持了竖脊肌和背阔肌向完全屈曲方向呈线性长度-张力关系的假设。速度趋势与希尔指数关系的预测相符,尽管发现线性趋势几乎同样适合这些数据。这些结果对生物力学躯干建模中的肌肉张力估计具有启示意义,并提示了在完全屈曲姿势下举重时通过组织应变导致下背痛损伤的一种可能机制。

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