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通过诱发肌肉振动测量肌肉疲劳。

Muscle fatigue measured with evoked muscle vibrations.

作者信息

Barry D T, Hill T, Im D

机构信息

Department of Physical Medicine and Rehabilitation, University of Michigan Medical Center, Ann Arbor 48109-0042.

出版信息

Muscle Nerve. 1992 Mar;15(3):303-9. doi: 10.1002/mus.880150308.

Abstract

Skeletal muscle vibrates laterally during voluntary and evoked muscle contractions. We hypothesized that the vibration amplitude from evoked muscle twitches is directly related to evoked twitch force from fatiguing muscle. To test the hypothesis, vibrations produced by evoked muscle twitches were recorded during short (5-second) rest periods as the muscle was intermittently exercised with voluntary contractions. Trials were performed at 30%, 50%, and 70% of maximal voluntary contraction. Evoked muscle twitches eliminated the problems of motivation and tremor that complicate sound and vibration measurements during voluntary contractions. Results from the first dorsal interosseus hand muscle in 11 normal adult volunteers revealed that the vibration amplitude is highly correlated (r2 = 0.93, at 70% MVC, r2 = 0.97, at 50% MVC; r2 = 0.85, at 30% MVC) with force. Both potentiation and reduction of force with exercise were accompanied by parallel changes in vibration amplitude, as measured with an accelerometer. Compound muscle action potentials did not increase with exercise-induced twitch potentiation, and did not correlate as highly with force during fatigue.

摘要

在自主和诱发的肌肉收缩过程中,骨骼肌会向侧面振动。我们假设诱发肌肉抽搐产生的振动幅度与疲劳肌肉的诱发抽搐力直接相关。为了验证这一假设,在短暂(5秒)的休息期间记录诱发肌肉抽搐产生的振动,在此期间肌肉通过自主收缩进行间歇性运动。试验在最大自主收缩的30%、50%和70%下进行。诱发肌肉抽搐消除了自主收缩过程中影响声音和振动测量的动机和震颤问题。11名正常成年志愿者第一背侧骨间手部肌肉的结果显示,振动幅度与力量高度相关(在70%最大自主收缩时,r2 = 0.93;在50%最大自主收缩时,r2 = 0.97;在30%最大自主收缩时,r2 = 0.85)。如用加速度计测量,运动时力量的增强和减弱都伴随着振动幅度的平行变化。运动诱发的抽搐增强时,复合肌肉动作电位并未增加,且在疲劳过程中与力量的相关性也不高。

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