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制动对疲劳期间肌电图功率谱变化的影响。

Effects of immobilization on electromyogram power spectrum changes during fatigue.

作者信息

Duchateau J, Hainaut K

机构信息

Laboratory of Biology, Université Libre de Bruxelles, Belgium.

出版信息

Eur J Appl Physiol Occup Physiol. 1991;63(6):458-62. doi: 10.1007/BF00868078.

Abstract

The maximal force and median frequency (MF) of the electromyogram (EMG) power density spectrum (PDS) have been compared in disused (6 weeks' immobilization) and control (contralateral) human adductor pollicis muscles during fatigue induced by voluntary or electrically-triggered (30 Hz) contractions. The results indicated that after 6 weeks' immobilization, MF was not significantly different in disused and control muscles although the force and integrated EMG were drastically reduced during a maximal voluntary contraction (MVC; by 55% and 45%, respectively, n = 8). During sustained 60 s MVC, the force decreased at the same rate in immobilized and control muscles, but the shift of MF towards lower frequency values was smaller (P less than 0.05) in disused muscle as compared to control by (14% vs 28%, respectively). In electrically-induced fatigue, the force decrease and the MF shift were larger after inactivity (41% and 43% in one subject, and 50% and 54% in the other subject, respectively) as compared to control (29% and 34% in one subject, and 37% and 38% in the other subject, respectively). These results emphasize the caution that should be exercised when EMG signals are quantified by computing the power density spectrum. The different effects of fatigue during voluntary and electrically-imposed contractions in disused and control muscles indicated that immobilization induced changes in the neural command for the contraction which compensated, at least in part, for its decreased contractile efficiency and resistance to fatigue.

摘要

在自愿收缩或电刺激(30Hz)诱发疲劳过程中,对废用(6周制动)和对照(对侧)的人拇收肌的最大肌力和肌电图(EMG)功率密度谱(PDS)的中位频率(MF)进行了比较。结果表明,制动6周后,尽管在最大自主收缩(MVC;n = 8,肌力和积分EMG分别大幅降低55%和45%)时,废用肌和对照肌的MF无显著差异。在持续60s的MVC过程中,制动肌和对照肌的肌力下降速率相同,但与对照相比,废用肌中MF向低频值的偏移较小(P<0.05)(分别为14%和28%)。在电诱发疲劳中,与对照相比(一名受试者分别为29%和34%,另一名受试者分别为37%和38%),不活动后肌力下降和MF偏移更大(一名受试者分别为41%和43%,另一名受试者分别为50%和54%)。这些结果强调了在通过计算功率密度谱对EMG信号进行量化时应谨慎。废用肌和对照肌在自愿收缩和电刺激收缩过程中疲劳的不同影响表明,制动引起了收缩神经指令的变化,这至少部分补偿了其收缩效率的降低和抗疲劳能力的下降。

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