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用于研究健康对照者颈部后侧和后外侧肌肉的肌电图标准化方法的检验

Examination of EMG normalisation methods for the study of the posterior and posterolateral neck muscles in healthy controls.

作者信息

Burnett Angus, Green Jonathon, Netto Kevin, Rodrigues Julian

机构信息

School of Physiotherapy, Curtin University of Technology, Bentley, GPO U1987, WA, Australia.

出版信息

J Electromyogr Kinesiol. 2007 Oct;17(5):635-41. doi: 10.1016/j.jelekin.2006.06.003. Epub 2006 Aug 8.

Abstract

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.

摘要

本研究的目的是检验一组健康对照者中用于研究颈后部和后外侧肌肉的标准化方法的可靠性。六名无症状男性受试者对着等速测力计的扭矩臂进行了总共12次最大自主等长收缩(MVIC)和60%最大自主等长收缩(60%-MVIC),同时从代表性的颈后部和后外侧位置单侧记录表面肌电图和肌内肌电图(EMG)。使用组内相关系数(ICC)、测量相对标准误差(%SEM)和相对变异系数(%CV)计算可靠性。当排除三次MVIC收缩中的第一次时,发现最大扭矩输出在伸展和右侧弯曲方向上具有高度可靠性。当对收缩方向进行平均时,发现表面电极(MVIC:ICC = 0.986,%SEM = 7.5,%CV = 9.2;60%-MVIC:ICC = 0.975,%SEM = 10,%CV = 13.7)和肌内电极(MVIC:ICC = 0.910,%SEM = 20,%CV = 19.1;60%-MVIC:ICC = 0.952,%SEM = 16.5,%CV = 13.5)均具有高可靠性。肌内电极在右侧弯曲时显示出最低的可靠性。视觉反馈的使用显著提高了60%-MVIC收缩的可靠性。

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