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随意收缩和疲劳过程中肌肉电输出与振动输出之间的关系。

Relationship between electrical and vibratory output of muscle during voluntary contraction and fatigue.

作者信息

Zwarts M J, Keidel M

机构信息

Department of Clinical Neurophysiology, University Hospital, Groningen, The Netherlands.

出版信息

Muscle Nerve. 1991 Aug;14(8):756-61. doi: 10.1002/mus.880140810.

DOI:10.1002/mus.880140810
PMID:1891000
Abstract

Measurements were done on the biceps muscles of 6 healthy volunteers to record simultaneously the surface electromyogram (EMG) and vibromyogram (VMG) by means of a piezoelectric device (accelerometer). The VMG is generated by mechanical waves due to the contraction mechanism and often measured as sound. The frequency spectrum and integrated value (IEMG and IVMG) of both signals were calculated. Both IEMG and IVMG showed a clear linear correlation with force, although at high forces, the variability of the VMG became rather high. Two series of experiments were performed to study the EMG and VMG changes in relation to changes induced by fatigue: (1) during constant force at 50% of the maximal voluntary contraction (MVC) and recovery; (2) for one 1 minute during declining force at MVC. The main finding was that the IVMG was related to the absolute force, irrespective of the fatigue state of the muscle. In contrast, the IEMG showed the well-known changes during fatigue, such as an increase during endurance. The spectral changes of the two measurements also showed a divergence. The spectra of the EMG shifted to lower frequencies in both fatigue protocols. In contrast, the spectra of the vibratory signal did not shift, except for several measurements at MVC. However, the shape did change to a somewhat flatter spectrum with less pronounced peaks. Possible explanations for this different behavior are discussed. It is concluded that the vibratory energy generated by the contraction mechanism is linearly related to force. Changes induced by fatigue do not alter this relationship: this contrasts with the behavior of the EMG.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

对6名健康志愿者的肱二头肌进行测量,通过压电装置(加速度计)同时记录表面肌电图(EMG)和振动肌电图(VMG)。VMG由收缩机制产生的机械波生成,通常作为声音进行测量。计算了两种信号的频谱和积分值(IEMG和IVMG)。IEMG和IVMG均与力量呈现明显的线性关系,不过在高力量时,VMG的变异性变得相当高。进行了两组实验来研究与疲劳引起的变化相关的EMG和VMG变化:(1)在最大自主收缩(MVC)的50%的恒定力量下及恢复过程中;(2)在MVC的力量下降过程中持续1分钟。主要发现是,IVMG与绝对力量相关,与肌肉的疲劳状态无关。相比之下,IEMG在疲劳过程中呈现出众所周知的变化,比如耐力期间增加。两种测量的频谱变化也显示出差异。在两种疲劳方案中,EMG的频谱均向较低频率偏移。相比之下,振动信号的频谱除了在MVC的几次测量外没有偏移。然而,其形状确实变为了频谱更平坦、峰值不太明显的样子。讨论了这种不同行为的可能解释。得出的结论是,由收缩机制产生的振动能量与力量呈线性相关。疲劳引起的变化不会改变这种关系:这与EMG的行为形成对比。(摘要截短为250字)

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