Potential of M-Wave Elicited by Double Pulse for Muscle Fatigue Evaluation in Intermittent Muscle Activation by Functional Electrical Stimulation for Motor Rehabilitation.

Journal of medical engineering Pub Date : 2016-01-01 Epub Date: 2016-03-27 DOI:10.1155/2016/6957287
Naoto Miura, Takashi Watanabe
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引用次数: 2

Abstract

Clinical studies on application of functional electrical stimulation (FES) to motor rehabilitation have been increasing. However, muscle fatigue appears early in the course of repetitive movement production training by FES. Although M-wave variables were suggested to be reliable indices of muscle fatigue in long lasting constant electrical stimulation under the isometric condition, the ability of M-wave needs more studies under intermittent stimulation condition, because the intervals between electrical stimulations help recovery of muscle activation level. In this paper, M-waves elicited by double pulses were examined in muscle fatigue evaluation during repetitive movements considering rehabilitation training with surface electrical stimulation. M-waves were measured under the two conditions of repetitive stimulation: knee extension force production under the isometric condition and the dynamic movement condition by knee joint angle control. Amplitude of M-wave elicited by the 2nd pulse of a double pulse decreased during muscle fatigue in both measurement conditions, while the change in M-waves elicited by single pulses in a stimulation burst was not relevant to muscle fatigue in repeated activation with stimulation interval of 1 s. Fatigue index obtained from M-waves elicited by 2nd pulses was suggested to provide good estimation of muscle fatigue during repetitive movements with FES.

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双脉冲诱发的m波电位在功能电刺激间歇肌活化运动康复中的肌肉疲劳评价。
功能电刺激(FES)在运动康复中的临床应用研究越来越多。然而,在FES重复性动作生产训练过程中,肌肉疲劳较早出现。虽然m波变量被认为是等长持续电刺激条件下肌肉疲劳的可靠指标,但在间歇刺激条件下,m波的能力需要更多的研究,因为电刺激之间的间隔有助于肌肉激活水平的恢复。本文研究了双脉冲诱发的m波在考虑表面电刺激复健训练的重复性运动中对肌肉疲劳的评价。在重复刺激的两种情况下测量m波:等距条件下膝关节伸直力的产生和膝关节角度控制的动态运动条件下。在两种测量条件下,双脉冲中的第二个脉冲在肌肉疲劳时所激发的m波振幅都有所下降,而在刺激间隔为1 s的重复激活条件下,单脉冲在刺激爆发时所激发的m波变化与肌肉疲劳无关。从第二脉冲引发的m波中获得的疲劳指数被认为可以很好地估计FES重复运动时的肌肉疲劳。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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