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电刺激电流频率对等长膝关节伸展扭矩的影响。

Effect of electrical stimulation current frequencies on isometric knee extension torque.

作者信息

Kramer J F

出版信息

Phys Ther. 1987 Jan;67(1):31-8. doi: 10.1093/ptj/67.1.31.

DOI:10.1093/ptj/67.1.31
PMID:3797474
Abstract

The purpose of this study was to compare the isometric knee extension torques of male and female subjects during maximal voluntary contractions (MVCs), electrical stimulation only, and electrical stimulation superimposed onto MVCs at electrical stimulation current frequencies of 20, 50, and 100 Hz. An asymmetrical, bidirectional, nonionizing waveform of 1-msec pulse duration was delivered through the femoral nerve and the superficial quadriceps femoris muscles at maximally tolerated intensity for each subject. The male subjects (n = 20) demonstrated significantly greater absolute torques under all contraction conditions than did the female subjects (n = 20) (p less than .01); when the torques were expressed as a percentage of each subject's MVC torque, however, no significant differences were observed between the sexes. Overall, the superimposed contractions at 50 and 100 Hz and the MVCs had similar torque values, all being significantly greater than the torque values produced by electrical stimulation only at frequencies of 20, 50, and 100 Hz and by the superimposed contractions at 20 Hz. Superimposing electrical stimulation onto MVCs did not result in greater torques than those produced by the MVCs alone. The three most effective contraction conditions, in terms of subject comfort (minimal discomfort) and increased torque, were the superimposed contractions at 50 and 100 Hz and MVCs alone, all of which involved a voluntary component.

摘要

本研究的目的是比较男性和女性受试者在最大自主收缩(MVC)、仅电刺激以及在20、50和100Hz电刺激频率下叠加于MVC的电刺激过程中的等长膝关节伸展扭矩。通过股神经和股四头肌浅层,以每个受试者最大耐受强度施加持续时间为1毫秒的不对称、双向、非电离波形。男性受试者(n = 20)在所有收缩条件下的绝对扭矩均显著高于女性受试者(n = 20)(p < 0.01);然而,当扭矩以每个受试者MVC扭矩的百分比表示时,两性之间未观察到显著差异。总体而言,50和100Hz的叠加收缩以及MVC具有相似的扭矩值,均显著高于仅在20、50和100Hz的电刺激以及20Hz的叠加收缩所产生的扭矩值。将电刺激叠加于MVC并未产生比单独MVC更大的扭矩。就受试者舒适度(最小不适)和扭矩增加而言,三种最有效的收缩条件是50和100Hz的叠加收缩以及单独的MVC,所有这些都涉及自主成分。

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