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在自行车测力计上进行运动期间肌电图的频率和幅度分析。

Frequency and amplitude analysis of the EMG during exercise on the bicycle ergometer.

作者信息

Petrofsky J S

出版信息

Eur J Appl Physiol Occup Physiol. 1979 Apr 12;41(1):1-15. doi: 10.1007/BF00424464.

Abstract

The surface EMG was recorded from above the quadriceps muscle in 3 male subjects during bicycle ergometry at work loads between 20 and 100% of the VO2 max to measure the EMG amplitude (RMS) and frequency (assessed from the center frequency of the power spectra) during this type of work. During brief (3 min) bouts of work the RMS amplitude of the EMG was linearly related to the work load; the center frequency of the EMG power spectra was the same at all work loads examined. In contrast, during sustained bouts of work maintained for 80 min at 20 and 40% of the VO2 max, the RMS amplitude of the EMG remained constant while the center frequency initially increased for the first 20 min of work and then progressively decreased as the work continued. When work loads of 60, 80, and 100% of the VO2 max were sustained to fatigue, the RMS amplitude continually increased while the EMG frequency decreased from the beginning to the end of the work periods. The results of this study showed that the EMG is a complex waveform, being influenced not only by fatigue, but to even a larger extent in many cases, the temperature of the exercising muscles. Therefore, although muscular fatigue caused an increase in the RMS amplitude and decrease in the center frequency, the increase in muscle temperature associated with the work opposed these changes by causing a reduction in the RMS amplitude and an increase in the center frequency.

摘要

在3名男性受试者进行自行车测力计运动时,从股四头肌上方记录表面肌电图,运动负荷为最大摄氧量(VO2 max)的20%至100%,以测量此类运动期间的肌电图振幅(均方根值,RMS)和频率(根据功率谱的中心频率评估)。在短暂(3分钟)的运动期间,肌电图的RMS振幅与运动负荷呈线性相关;在所有检查的运动负荷下,肌电图功率谱的中心频率相同。相比之下,在以最大摄氧量的20%和40%持续运动80分钟的过程中,肌电图的RMS振幅保持恒定,而中心频率在运动的前20分钟最初增加,然后随着运动的持续而逐渐下降。当以最大摄氧量的60%、80%和100%的运动负荷持续到疲劳时,RMS振幅持续增加,而肌电图频率在运动期间从开始到结束逐渐下降。这项研究的结果表明,肌电图是一种复杂的波形,不仅受疲劳影响,而且在许多情况下,受运动肌肉温度的影响更大。因此,尽管肌肉疲劳导致RMS振幅增加和中心频率降低,但与运动相关的肌肉温度升高通过导致RMS振幅降低和中心频率增加来对抗这些变化。

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