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首页> 外文期刊>Journal of Biomechanics >The ability of surface electromyography to represent supraspinatus anterior and posterior partition activity depends on elevation angle, hand load and plane of elevation
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The ability of surface electromyography to represent supraspinatus anterior and posterior partition activity depends on elevation angle, hand load and plane of elevation

机译:表面肌电图代表Supraspinatus前后和后分隔断活性的能力取决于仰角,手载和高度平面

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摘要

This study examined relationships between electromyography recorded from indwelling electrodes of the anterior and posterior supraspinatus and a surface supraspinatus electrode. Twenty male and twenty female participants completed full range humeral elevations in three planes of elevation (0/40/90 degrees and three hand loads (unloaded/20%/40% of maximal elevation strength). EMG activation was combined with motion capture to determine activation at instantaneous activation angles, and linear regressions of anterior and posterior indwelling electrodes relative to the surface electrode determined relationships between these signals. Regressions between surface and indwelling signals were affected by plane of elevation, elevation angle, load intensity and participant sex, but no interactions existed. Surface signals underestimated activation at low elevation angles for both regions, and up to 45% in the anterior supraspinatus (p < 0.01), then overestimated activation at higher elevation angles. Surface EMG underestimated indwelling signals by up to 15% in unloaded conditions, while overestimating the posterior region by up to 17% in the 40% load condition (p < 0.01). Sex effects showed increased overestimation by surface signals in the posterior region in males by 21% (p < 0.01). Better agreement existed for the anterior region than the posterior region across postures, but postural relationships should be considered when choosing electrodes for this muscle. (C) 2019 Elsevier Ltd. All rights reserved.
机译:该研究检查了从前后和后穗度和表面冈上的电极记录的电核景之间的关系。 20名男性和二十名女性参与者在三个海拔飞机上完成了全方位的肱骨高度(0/40/90度和三手载荷(卸载/ 20%/ 40%的最大高度)。EMG激活与运动捕获相结合以确定在瞬时激活角度的激活,以及相对于这些信号之间的表面电极的前线和后侧留置电极的线性回归。表面和留置信号之间的回归受海拔平面,仰角,负荷强度和参与者性别的影响,但没有存在相互作用。表面信号在较高的升高角度下高达45%的区域以低仰角角度低估的激活,然后在较高的高度角度下高估激活。在卸载时,EMG低估了留置信号最多15%。条件,同时在40%负载条件下高估后区域高达17%(P <0。 01)。性别效应表明,在雄性后部区域的表面信号升高增加21%(P <0.01)。前区域比横跨姿势的后部区域更好地存在,但在为此肌肉选择电极时,应考虑姿势关系。 (c)2019年elestvier有限公司保留所有权利。

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