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刺激腓总神经时皮质脊髓兴奋性的变化依赖于刺激频率。

Changes in corticospinal excitability evoked by common peroneal nerve stimulation depend on stimulation frequency.

机构信息

Human Neurophysiology Laboratory, Faculty of Physical Education and Recreation, Centre for Neuroscience, University of Alberta, Edmonton, Canada.

出版信息

Exp Brain Res. 2010 May;203(1):11-20. doi: 10.1007/s00221-010-2202-x. Epub 2010 Mar 9.

Abstract

The afferent volley generated during neuromuscular electrical stimulation (NMES) can increase the excitability of the human corticospinal (CS) pathway. This study was designed to determine the effect of different frequencies of NMES applied over the common peroneal nerve on changes in CS excitability for the tibialis anterior (TA) muscle. We hypothesized that higher frequencies of stimulation would produce larger increases in CS excitability than lower frequencies. NMES was applied at 10, 50, 100, or 200 Hz during separate sessions held at least 48 h apart. The stimulation was delivered in a 20 s on, 20 s off cycle for 40 min using a 1 ms pulse width. The intensity of stimulation was set to evoke an M-wave in response to a single pulse that was 15% of the maximal M-wave. CS excitability was evaluated by the amplitude of motor-evoked potentials (MEPs) in TA evoked by transcranial magnetic stimulation. MEPs were recorded immediately before and after the 40 min of NMES and in each 20 s "off" period. For each subject, MEPs recorded during three successive "off" periods were averaged together (n = 9 MEPs), providing a temporal resolution of 2 min for assessing changes in CS excitability. When delivering NMES at 100 Hz, MEPs became significantly elevated from those evoked before the stimulation at the 24th min, and there was a twofold increase in MEP amplitude after 40 min. NMES delivered at 10, 50, and 200 Hz did not significantly alter MEP amplitude. The amplitude of MEPs evoked in soleus and vastus medialis followed similar patterns as those evoked simultaneously in TA, but these changes were mostly not of statistical significance. There were no changes in the ratio of maximal H-reflex to maximal M-wave in TA or soleus. These experiments demonstrate a frequency-dependent effect of NMES on CS excitability for TA and show that, under the conditions of the present study, 100-Hz stimulation was more effective than 10, 50, and 200 Hz. This effect of NMES on CS excitability was strongest in the stimulated muscle and may be mediated primarily at a supraspinal level. These results contribute to a growing body of knowledge about how the afferent volley generated during NMES influences the CNS and have implications for identifying optimal NMES parameters to augment CS excitability for rehabilitation of dorsiflexion after CNS injury.

摘要

神经肌肉电刺激(NMES)产生的传入冲动可增加人类皮质脊髓(CS)通路的兴奋性。本研究旨在确定施加于腓总神经的不同 NMES 频率对胫骨前肌(TA)CS 兴奋性变化的影响。我们假设较高频率的刺激会比较低频率产生更大的 CS 兴奋性增加。在至少相隔 48 小时的单独会议期间,以 10、50、100 或 200 Hz 的频率施加 NMES。刺激以 20 秒 ON、20 秒 OFF 的周期进行,持续 40 分钟,脉冲宽度为 1 毫秒。刺激强度设定为在单个脉冲下引起 M 波,该脉冲为最大 M 波的 15%。通过经颅磁刺激诱发的 TA 运动诱发电位(MEP)的幅度来评估 CS 兴奋性。在 40 分钟 NMES 之前和之后以及每个 20 秒的“关闭”期间立即记录 MEP。对于每个受试者,在三个连续的“关闭”期间记录的 MEP 一起平均(n = 9 个 MEP),为评估 CS 兴奋性变化提供了 2 分钟的时间分辨率。当以 100 Hz 施加 NMES 时,从刺激前的 24 分钟开始,MEP 明显升高,并且在 40 分钟后 MEP 幅度增加了两倍。以 10、50 和 200 Hz 施加 NMES 不会显著改变 MEP 幅度。比目鱼肌和股直肌同时诱发的 MEP 幅度遵循与 TA 相似的模式,但这些变化大多没有统计学意义。在 TA 或比目鱼肌中,最大 H 反射与最大 M 波的比值没有变化。这些实验证明了 NMES 对 TA 皮质脊髓兴奋性的频率依赖性影响,并表明在本研究条件下,100-Hz 刺激比 10、50 和 200 Hz 更有效。NMES 对 CS 兴奋性的这种影响在受刺激的肌肉中最强,并且可能主要在脊髓上水平介导。这些结果有助于增加关于 NMES 期间产生的传入冲动如何影响 CNS 的知识体系,并对确定最佳 NMES 参数以增强 CNS 损伤后 CS 兴奋性以增强背屈功能恢复具有重要意义。

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