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刺激脉冲宽度对低强度强直肌电刺激时 M 波、H 反射和力矩的影响。

Influence of stimulus pulse width on M-waves, H-reflexes, and torque during tetanic low-intensity neuromuscular stimulation.

机构信息

Human Neurophysiology Laboratory, Centre for Neuroscience, University of Alberta, Edmonton, Alberta T6G 2H9, Canada.

出版信息

Muscle Nerve. 2010 Dec;42(6):886-93. doi: 10.1002/mus.21762. Epub 2010 Sep 30.

Abstract

Neuromuscular electrical stimulation (NMES) has been shown to generate contractions that include a central recruitment of motoneurons; however, the effect of pulse width on electromyographic (EMG) and torque responses during NMES are not well documented. Soleus EMG and isometric plantarflexion torque were recorded from 14 subjects with NMES delivered to the tibial nerve using 50, 200, 500, and 1000 μs pulse widths. M-waves were significantly smaller during 20 Hz NMES compared with responses evoked by single pulses of 200, 500, and 1000 μs, but not 50 μs pulse widths. At all pulse widths, stimulation at 20 Hz depressed soleus H-reflexes compared with single pulses. Two seconds of 100 Hz NMES significantly increased H-reflexes and torque during the subsequent 20 Hz NMES with 200, 500, and 1000 μs, but not 50 μs, pulse widths. NMES delivered using wide pulses generated larger contractions with a relatively greater central contribution than narrow pulses. This may help reduce atrophy and produce fatigue-resistant contractions for rehabilitation.

摘要

神经肌肉电刺激(NMES)已被证明可以产生收缩,包括运动神经元的中枢募集;然而,关于脉冲宽度对 NMES 期间肌电图(EMG)和扭矩反应的影响,文献记载并不充分。使用 50、200、500 和 1000 μs 脉冲宽度对 14 名受试者的胫骨神经进行 NMES 后,记录了比目鱼肌的 EMG 和等长跖屈扭矩。与 200、500 和 1000 μs 的单脉冲相比,20 Hz 的 NMES 产生的 M 波明显更小,但 50 μs 的脉冲宽度除外。在所有脉冲宽度下,与单脉冲相比,20 Hz 的刺激均使比目鱼肌 H 反射受到抑制。100 Hz 的 NMES 持续 2 秒,随后在 200、500 和 1000 μs 但不是 50 μs 的脉冲宽度下,显著增加了 H 反射和扭矩。与窄脉冲相比,宽脉冲产生的收缩更大,中枢贡献相对更大。这可能有助于减少萎缩并产生抗疲劳收缩,以促进康复。

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