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基于运动单位活动估计肌肉对关节扭矩的贡献。

Estimating the contribution of muscles to joint torque based on motor-unit activity.

作者信息

Theeuwen M, Gielen C C, van Bolhuis B M

机构信息

Department of Medical Physics and Biophysics, University of Nijmegen, The Netherlands.

出版信息

J Biomech. 1996 Jul;29(7):881-9. doi: 10.1016/0021-9290(95)00158-1.

Abstract

Because most joints in the human arm are crossed by a number of muscles which exceeds the number of degrees of freedom for those joints, the motor system can use a variety of muscle activation patterns for the same torque in each joint. We have developed a mode to estimate the contribution of individual muscles to the total torque in a joint based on intramuscular EMG recordings. EMG activity recorded with surface electrodes may be contaminated with cross-talk from other muscles. Moreover, it may not be representative for the activation of a muscle when there are several subpopulations of motor units in the muscle. We derive a relation between the recruitment threshold of a motor unit in a subpopulation for force in various directions and the relative contribution by that subpopulation to joint torque. A set of linear equations can then be constructed which relates the contribution of each subpopulation (and therefore of each muscle) to the total joint torque. If the activition of individual subpopulations is modulated differently for forces in various directions, the relative contribution of the individual subpopulations to the total joint torque can be estimated.

摘要

由于人类手臂中的大多数关节都被许多肌肉交叉穿过,这些肌肉的数量超过了关节的自由度数量,因此运动系统可以在每个关节中针对相同的扭矩使用多种肌肉激活模式。我们已经开发出一种模式,基于肌内肌电图记录来估计单个肌肉对关节总扭矩的贡献。用表面电极记录的肌电图活动可能会受到来自其他肌肉的串扰污染。此外,当肌肉中存在多个运动单位亚群时,它可能无法代表肌肉的激活情况。我们推导了亚群中运动单位在不同方向上产生力的募集阈值与该亚群对关节扭矩的相对贡献之间的关系。然后可以构建一组线性方程,将每个亚群(进而每个肌肉)的贡献与关节总扭矩联系起来。如果针对不同方向的力对各个亚群的激活进行不同的调制,就可以估计各个亚群对关节总扭矩的相对贡献。

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