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在进行性运动单位激活过程中,脉冲电荷而非波形会影响M波特性。

Pulse charge and not waveform affects M-wave properties during progressive motor unit activation.

作者信息

Botter A, Merletti R, Minetto M A

机构信息

Laboratory for Engineering of the Neuromuscular System (LISiN), Department of Electronics, Polytechnic of Turin, Turin, Italy.

出版信息

J Electromyogr Kinesiol. 2009 Aug;19(4):564-73. doi: 10.1016/j.jelekin.2008.03.009. Epub 2008 May 1.

Abstract

The aim of this study was to investigate changes in experimentally recorded M-waves with progressive motor unit (MU) activation induced by transcutaneous electrical stimulation with different pulse waveforms. In 10 subjects, surface electromyographic signals were detected with a linear electrode array during electrically elicited contractions of the biceps brachii muscle. Three different monophasic waveforms of 304-micros duration were applied to the stimulation electrode on the main muscle motor point: triangular, square, and sinusoidal. For each waveform, increasing stimulation current intensities were applied in 10 s (frequency: 20 Hz). It was found that: (a) the degree of MU activation, as indicated by M-wave average rectified value, was a function of the injected charge and not of the stimulation waveform, and (b) MUs tended to be recruited in order of increasing conduction velocity with increasing charge of transcutaneous stimulation. Moreover, the subjects reported lower discomfort during the contractions elicited by the triangular waveform with respect to the others. Since subject tolerance to the stimulation protocol must be considered as important as MU recruitment in determining the effectiveness of neuromuscular electrical stimulation (NMES), we suggest that both charge and waveform of the stimulation pulses should be considered relevant parameters for optimizing NMES protocols.

摘要

本研究的目的是探究在不同脉冲波形的经皮电刺激诱导下,随着运动单位(MU)逐渐激活,实验记录的M波的变化情况。在10名受试者中,通过线性电极阵列在肱二头肌的电诱发收缩过程中检测表面肌电信号。将三种持续时间为304微秒的不同单相波形施加到主要肌肉运动点的刺激电极上:三角形、方形和正弦形。对于每种波形,在10秒内施加逐渐增加的刺激电流强度(频率:20赫兹)。结果发现:(a)以M波平均整流值表示的MU激活程度是注入电荷量的函数,而非刺激波形的函数;(b)随着经皮刺激电荷量增加,运动单位倾向于按照传导速度增加的顺序被募集。此外,与其他波形相比,受试者在三角形波形诱发的收缩过程中报告的不适感较低。由于在确定神经肌肉电刺激(NMES)的有效性时,受试者对刺激方案的耐受性必须被视为与运动单位募集同样重要,因此我们建议,刺激脉冲的电荷量和波形都应被视为优化NMES方案的相关参数。

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