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肌肉力量与肌电图之间关系形式的影响因素:一项模拟研究。

Factors governing the form of the relation between muscle force and the EMG: a simulation study.

作者信息

Zhou Ping, Rymer William Zev

机构信息

Sensory Motor Performance Program, Rehabilitation Institute of Chicago, 345 E. Superior St., Suite 1406, Chicago, IL 60611, USA.

出版信息

J Neurophysiol. 2004 Nov;92(5):2878-86. doi: 10.1152/jn.00367.2004. Epub 2004 Jun 16.

Abstract

The dependence of the form of the EMG-force relation on key motoneuron and muscle properties was explored using a simulation approach. Surface EMG signals and isometric forces were simulated using existing motoneuron pool, muscle force, and surface EMG models, based primarily on reported properties of the first dorsal interosseous (FDI) muscle in humans. Our simulation results indicate that the relation between electrical and mechanical properties of the individual motor unit level plays the dominant role in determining the overall EMG amplitude-force relation of the muscle, while the underlying motor unit firing rate strategy appears to be a less important factor. However, different motor unit firing rate strategies result in substantially different relations between counts of the numbers of motoneuron discharges and the isometric force. Our simulation results also show that EMG amplitude (estimated as the average rectified value) increases as a result of synchronous discharges of different motor units within the pool, but the magnitude of this increase is determined primarily by the action potential duration of the synchronized motor units. Furthermore, when the EMG effects are normalized to their maximum levels, motor unit synchrony does not exert significant effects on the form of the EMG-force relation, provided that the synchrony level is held similar at different excitation levels.

摘要

使用模拟方法探讨了肌电图-力关系的形式对关键运动神经元和肌肉特性的依赖性。主要基于已报道的人类第一背侧骨间肌(FDI)的特性,使用现有的运动神经元池、肌肉力和表面肌电图模型来模拟表面肌电图信号和等长力。我们的模拟结果表明,单个运动单位水平的电学和力学特性之间的关系在决定肌肉的整体肌电图幅度-力关系中起主导作用,而潜在的运动单位放电频率策略似乎是一个不太重要的因素。然而,不同的运动单位放电频率策略会导致运动神经元放电次数与等长力之间的关系有很大差异。我们的模拟结果还表明,由于运动神经元池内不同运动单位的同步放电,肌电图幅度(估计为平均整流值)会增加,但这种增加的幅度主要由同步运动单位的动作电位持续时间决定。此外,当将肌电图效应归一化到其最大水平时,只要在不同的兴奋水平下同步水平保持相似,运动单位同步对肌电图-力关系的形式就不会产生显著影响。

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