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肘关节弯曲和刺激部位对肱二头肌神经肌肉电刺激的影响。

Influence of Elbow Flexion and Stimulation Site on Neuromuscular Electrical Stimulation of the Biceps Brachii.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2018 Apr;26(4):904-910. doi: 10.1109/TNSRE.2018.2807762.

Abstract

Functional electrical stimulation (FES) can help individuals with physical disabilities by assisting limb movement; however, the change in muscle geometry associated with limb movement may affect the response to stimulation. The aim of this paper was to quantify the effects of elbow flexion and stimulation site on muscle torque production. Contraction torque about the elbow was measured in 12 healthy individuals using a custom elbow flexion testbed and a transcutaneous electrode array. Stimulation was delivered to six distinct sites along the biceps brachii over 11 elbow flexion angles. Flexion angle was found to significantly influence the optimal (i.e., torque-maximizing) stimulation site ( ), with post hoc analysis indicating a proximal shift in optimal stimulation site with increased flexion. Similarly, the biceps stimulation site was found to significantly influence the flexion angle at which peak torque occurred ( ), with post hoc analysis indicating an increase in peak-torque flexion angle as stimulation site is moved proximally up the biceps. Since maximizing muscle force per unit stimulation is a common goal in rehabilitative FES, future efforts could examine methods which compensate for the shift in optimal stimulation site during FES-induced limb movement.

摘要

功能性电刺激(FES)可以通过辅助肢体运动来帮助身体残疾者;然而,与肢体运动相关的肌肉几何形状的变化可能会影响刺激的反应。本文的目的是定量研究肘部弯曲和刺激部位对肌肉扭矩产生的影响。使用定制的肘部弯曲测试台和经皮电极阵列,在 12 名健康个体中测量了肘部的收缩扭矩。在 11 个肘部弯曲角度下,向肱二头肌的六个不同部位施加刺激。发现弯曲角度显著影响最佳(即扭矩最大化)刺激部位(),事后分析表明,随着弯曲角度的增加,最佳刺激部位向近端移动。同样,发现肱二头肌刺激部位显著影响产生峰值扭矩的弯曲角度(),事后分析表明,随着刺激部位向肱二头肌近端移动,峰值扭矩弯曲角度增加。由于在康复性 FES 中使单位刺激的肌肉力最大化是一个常见目标,未来的研究可以研究在 FES 诱导的肢体运动过程中补偿最佳刺激部位变化的方法。

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