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运动单位动作电位形状的计算机模拟研究

Computer simulation study of the shape of motor unit action potential.

作者信息

Piotrkiewicz M

机构信息

Institute of Biocybernetics and Biomedical Engineering, Polish Academy of Sciences, Warsaw.

出版信息

Acta Physiol Pol. 1988 Jan-Feb;39(1):35-45.

PMID:3421135
Abstract

Motor unit action potentials (MUAPs) of brachial biceps were simulated. A simulated MUAP was obtained as a sum of single fibre action potentials (SFAPs) from all the muscle fibres of a motor unit (MU). The influence of the following factors on MUAP shape for different kinds of recording electrode was studied: fibre density, neuromuscular jitter, temporal dispersion and electrode displacements. The simulation confirms that typical MUAPs recorded with needle electrodes from muscles of low fibre density such as brachial biceps are usually triphasic. Increased fibre density produces MUAPs of more complex shape and higher amplitude. Normal neuromuscular jitter is responsible for the variability of shape of subsequent potentials from the same MU as well as for electromyographic shimmer. Pathologic (increased) jitter makes the shapes of subsequent potentials unrecognizable. The influence of temporal dispersion is interconnected with other factors but rather of minor importance. The simulation shows how big changes in MUAP shape can be expected due to electrode displacements during single experiment or during estimation of MU territory.

摘要

模拟了肱二头肌的运动单位动作电位(MUAPs)。通过将来自一个运动单位(MU)所有肌纤维的单纤维动作电位(SFAPs)相加,得到模拟的MUAP。研究了以下因素对不同类型记录电极的MUAP形状的影响:纤维密度、神经肌肉抖动、时间离散和电极位移。模拟结果证实,用针电极从纤维密度低的肌肉(如肱二头肌)记录到的典型MUAP通常是三相的。纤维密度增加会产生形状更复杂、幅度更高的MUAP。正常的神经肌肉抖动导致来自同一MU的后续电位形状的变异性以及肌电图闪烁。病理性(增加的)抖动会使后续电位的形状无法识别。时间离散的影响与其他因素相互关联,但重要性相对较小。模拟显示了在单次实验或估计MU区域期间,由于电极位移,MUAP形状可能会发生多大的变化。

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