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首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Examination of EMG normalisation methods for the study of the posterior and posterolateral neck muscles in healthy controls
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Examination of EMG normalisation methods for the study of the posterior and posterolateral neck muscles in healthy controls

机译:肌电图标准化方法的研究,以研究健康对照中的后颈和后外侧颈肌

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摘要

The purpose of this study was to examine the reliability of normalisation methods used in the study of the posterior and posterolateral neck muscles in a group of healthy controls. Six asymptomatic male subjects performed a total of 12 maximum voluntary isometric contractions (MVIC) and 60%-submaximal isometric contractions (60%-MVIC) against the torque arm of an isokinetic dynamometer whilst surface and intramuscular electromyography (EMG) was recorded unilaterally from representative posterior and posterolateral locations. Reliability was calculated using intra-class correlation coefficient (ICC), relative standard error of measurement (%SEM) and relative coefficient of variation (%CV). Maximal torque output was found to be highly reliable in the directions of extension and right lateral bending when the first of three MVIC contractions was excluded. When averaged across contraction direction, high reliability was found for both surface (MVIC: ICC = 0.986, %SEM = 7.5, %CV = 9.2; 60%-MVIC: ICC = 0.975, %SEM = 10, %CV = 13.7) and intramuscular (MVIC: ICC = 0.910, %SEM = 20, %CV = 19.1; 60%-MVIC: ICC = 0.952, %SEM = 16.5, %CV = 13.5) electrodes. Intramuscular electrodes displayed the least reliability in right lateral bending. The use of visual feedback markedly increased the reliability of 60%-MVIC contractions. (c) 2006 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是检验一组健康对照中研究后颈和后外侧颈肌的标准化方法的可靠性。六名无症状男性受试者对等速测力计的扭力臂进行了总共12次最大自愿等距收缩(MVIC)和60%次最大等距收缩(60%-MVIC),同时从代表单方面记录了表面和肌内肌电图(EMG)后和后外侧位置。使用组内相关系数(ICC),相对标准测量误差(%SEM)和相对变异系数(%CV)计算可靠性。当排除三个MVIC收缩中的第一个收缩时,发现最大扭矩输出在延伸和右侧弯曲方向上高度可靠。当沿收缩方向平均时,发现两个表面的可靠性很高(MVIC:ICC = 0.986,%SEM = 7.5,%CV = 9.2; 60%-MVIC:ICC = 0.975,%SEM = 10,%CV = 13.7)和肌内(MVIC:ICC = 0.910,%SEM = 20,%CV = 19.1; 60%-MVIC:ICC = 0.952,%SEM = 16.5,%CV = 13.5)电极。肌内电极在右侧弯曲中显示出最低的可靠性。视觉反馈的使用显着提高了60%-MVIC收缩的可靠性。 (c)2006 Elsevier Ltd.保留所有权利。

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