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评估在强力握持过程中使前臂肌电图标准化的方案。

Evaluating protocols for normalizing forearm electromyograms during power grip.

作者信息

Ngo Binh P T, Wells Richard P

机构信息

Department of Kinesiology, University of Waterloo, 200 University Ave. W, Waterloo N2L 3G1, Canada.

Department of Kinesiology, University of Waterloo, 200 University Ave. W, Waterloo N2L 3G1, Canada.

出版信息

J Electromyogr Kinesiol. 2016 Feb;26:66-72. doi: 10.1016/j.jelekin.2015.10.014. Epub 2015 Nov 4.

Abstract

Many studies use a reference task of an isometric maximum voluntary power grip task in a mid-pronated forearm posture to normalize their forearm electromyographic (EMG) signal amplitude. Currently there are no recommended protocols to do this. In order to provide guidance on the topic, we examined the EMG amplitude of six forearm muscles (three flexors and three extensors) during twenty different maximal voluntary efforts that included various gripping postures, force and moment exertions and compared them to a frequently used normalization task of exerting a maximum grip force, termed the reference task. 16 participants (8 male and 8 female, aged 18-26) were recruited for this study. Overall, maximal muscle activity was produced during the resisted moment tasks. When contrasted with the reference task, the resisted moment tasks produced EMG activity that was up to 2.8 times higher (p<0.05). Although there was no one task that produced greater EMG values than the reference task for all forearm muscles, the resisted flexor and extensor moment tasks produced similar, if not higher EMG activity than the reference task for the three flexors and three extensor muscles, respectively. This suggests that researchers wishing to normalize forearm EMG activity during power gripping prehensile tasks should use resisted flexor and extensor moment tasks to obtain better estimates of the forearm muscles' maximum electrical activation magnitudes.

摘要

许多研究使用等长最大自主力量握力任务作为参考任务,该任务采用前臂中度旋前姿势,以标准化前臂肌电图(EMG)信号幅度。目前尚无推荐的执行此操作的方案。为了提供关于该主题的指导,我们在20种不同的最大自主努力过程中,检查了六块前臂肌肉(三块屈肌和三块伸肌)的EMG幅度,这些努力包括各种抓握姿势、力和力矩施加,并将它们与一种常用的最大握力施加的标准化任务(称为参考任务)进行比较。本研究招募了16名参与者(8名男性和8名女性,年龄在18 - 26岁之间)。总体而言,在抗阻力矩任务期间产生了最大肌肉活动。与参考任务相比,抗阻力矩任务产生的EMG活动高达2.8倍(p<0.05)。尽管没有一项任务能使所有前臂肌肉产生比参考任务更高的EMG值,但抗阻屈肌和伸肌力矩任务分别对三块屈肌和三块伸肌产生了与参考任务相似(如果不是更高)的EMG活动。这表明,希望在动力性抓握任务期间标准化前臂EMG活动的研究人员应使用抗阻屈肌和伸肌力矩任务,以更好地估计前臂肌肉的最大电激活幅度。

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