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神经肌肉电刺激对腿部肌肉的皮质脊髓兴奋性具有全局影响,对手部肌肉则具有集中影响。

Neuromuscular electrical stimulation has a global effect on corticospinal excitability for leg muscles and a focused effect for hand muscles.

机构信息

Human Neurophysiology Laboratory, Faculty of Physical Education and Recreation, Centre for Neuroscience, University of Alberta, E-488 Van Vliet Centre, Edmonton, AB T6G 2H9, Canada.

出版信息

Exp Brain Res. 2011 Mar;209(3):355-63. doi: 10.1007/s00221-011-2556-8. Epub 2011 Feb 1.

Abstract

The afferent volley generated during neuromuscular electrical stimulation (NMES) can increase the excitability of human corticospinal (CS) pathways to muscles of the leg and hand. Over time, such increases can strengthen CS pathways damaged by injury or disease and result in enduring improvements in function. There is some evidence that NMES affects CS excitability differently for muscles of the leg and hand, although a direct comparison has not been conducted. Thus, the present experiments were designed to compare the strength and specificity of NMES-induced changes in CS excitability for muscles of the leg and hand. Two hypotheses were tested: (1) For muscles innervated by the stimulated nerve (target muscles), CS excitability will increase more for the hand than for the leg. (2) For muscles not innervated by the stimulated nerve (non-target muscles), CS excitability will increase for muscles of the leg but not muscles of the hand. NMES was delivered over the common peroneal (CP) nerve in the leg or the median nerve at the wrist using a 1-ms pulse width in a 20 s on, 20 s off cycle for 40 min. The intensity was set to evoke an M-wave that was ~15% of the maximal M-wave in the target muscle: tibialis anterior (TA) in the leg and abductor pollicis brevis (APB) in the hand. Ten motor-evoked potentials (MEPs) were recorded from the target muscles and from 2 non-target muscles of each limb using transcranial magnetic stimulation delivered over the "hotspot" for each muscle before and after the NMES. MEP amplitude increased significantly for TA (by 45 ± 6%) and for APB (56 ± 8%), but the amplitude of these increases was not different. In non-target muscles, MEPs increased significantly for muscles of the leg (42 ± 4%), but not the hand. Although NMES increased CS excitability for target muscles to the same extent in the leg and hand, the differences in the effect on non-target muscles suggest that NMES has a "global" effect on CS excitability for the leg and a "focused" effect for the hand. These differences may reflect differences in the specificity of afferent projections to the cortex. Global increases in CS excitability for the leg could be advantageous for rehabilitation as NMES applied to one muscle could strengthen CS pathways and enhance function for multiple muscles.

摘要

神经肌肉电刺激(NMES)产生的传入冲动可以增加人类皮质脊髓(CS)通路对腿部和手部肌肉的兴奋性。随着时间的推移,这种增加可以增强因受伤或疾病而受损的 CS 通路,并导致功能的持久改善。有一些证据表明,NMES 对腿部和手部肌肉的 CS 兴奋性的影响不同,尽管尚未进行直接比较。因此,本实验旨在比较腿部和手部肌肉 NMES 诱导的 CS 兴奋性变化的强度和特异性。提出了两个假设:(1)对于受刺激神经支配的肌肉(目标肌肉),手部的 CS 兴奋性增加幅度将大于腿部。(2)对于不受刺激神经支配的肌肉(非目标肌肉),腿部肌肉的 CS 兴奋性会增加,但手部肌肉不会。使用 1 毫秒脉冲宽度,在 20 秒 ON、20 秒 OFF 周期内,在腿部的 common peroneal(CP)神经或手腕处的 median 神经上进行 NMES,持续 40 分钟。强度设置为诱发目标肌肉(腿部的 tibialis anterior(TA)和手部的 abductor pollicis brevis(APB))中的 M 波约为最大 M 波的 15%。在 NMES 之前和之后,使用经颅磁刺激在每个肌肉的“热点”上从目标肌肉和每个肢体的 2 个非目标肌肉记录 10 个运动诱发电位(MEP)。TA(增加 45±6%)和 APB(增加 56±8%)的 MEP 幅度显著增加,但这些增加的幅度没有差异。在非目标肌肉中,腿部肌肉(增加 42±4%)的 MEP 显著增加,但手部肌肉没有。尽管 NMES 以相同的程度增加了腿部和手部目标肌肉的 CS 兴奋性,但对非目标肌肉的影响存在差异,这表明 NMES 对腿部的 CS 兴奋性具有“整体”影响,对手部的 CS 兴奋性具有“聚焦”影响。这些差异可能反映了传入投射到皮质的特异性差异。腿部 CS 兴奋性的整体增加可能对康复有益,因为施加于一个肌肉的 NMES 可以增强 CS 通路并增强多个肌肉的功能。

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