首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Can visual feedback on upper trapezius high-density surface electromyography increase time to task failure of an endurance task?
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Can visual feedback on upper trapezius high-density surface electromyography increase time to task failure of an endurance task?

机译:可以在上梯高密度表面电拍摄的视觉反馈增加时间到耐力任务的任务故障?

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摘要

We investigate whether visual feedback on the spatial distribution of upper trapezius muscle activity can prolong time to task failure of sustained shoulder abduction. Surface electromyographic signals were acquired with a 13x5 grid of high-density electromyography (HDEMG) electrodes from the right upper trapezius muscle of 12 healthy volunteers as they performed sustained isometric shoulder abduction at 20% of their maximum voluntary contraction torque (MVC) until volitional exhaustion. Data were collected in two sessions; one with HDEMG visual feedback on the spatial distribution of upper trapezius activity and one without feedback. Although the HDEMG amplitude maps could be voluntarily modified by the participants during the feedback condition (significant shift in the barycenter of activity towards the cranial direction, P = 0.038), this did not influence endurance time (total endurance time with HDEMG feedback: 149.01 +/- 77.07 s, no feedback 141.74 +/- 60.93 s, P = 0.532). Future studies should assess whether endurance performance can be enhanced by allowing changes in arm position during the task (changing fiber tension-length relationships), by providing a more individual motor strategy, and/or by manipulating the colours used for the HDEMG maps (lighter colours for higher contraction intensities).
机译:我们调查是否对上梯肌活动的空间分布的视觉反馈可以延长持续肩部绑架的任务失败。用来自12个健康志愿者的右上斜肌肌的13x5栅格的13x5栅格获取表面电拍摄信号,因为它们在其最大自愿收缩扭矩(MVC)的20%处执行持续的等距肩部绑架直至从耗尽。数据在两个会议中收集;一个有HDEMG视觉反馈,请参见上梯度的空间分布和一个没有反馈的空间分布。尽管在反馈条件期间,参与者可以自愿修改HDEMG幅度图(朝向颅向的活动中的重心转变,P = 0.038),但这并未影响耐久性时间(HDEMG反馈的总耐久性时间:149.01 + / - 77.07 S,无反馈141.74 +/- 60.93 s,p = 0.532)。未来的研究应该通过提供更单独的电机策略,通过提供更单独的电机策略,和/或操纵用于HDEMG地图的颜色来评估是否可以提高耐力性能用于更高收缩强度的颜色)。

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