急性失手模型在 NMES 期间诱发的 Beta 变化

Yun Zhao, Guang H Xie, Ren Q Yang, Hai Y Qin, Yu P Yang, Xiao Y Wu, Wen S Hou
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摘要

神经肌肉电刺激(NMES)通过诱发上肢肌肉收缩并产生关节运动,有效调节大脑皮层活动,在运动康复中表现出色。然而,由于断手引起的手部缺失和皮层功能重组,截肢残端感觉运动皮层的神经活动如何对 NMES 诱发的肌肉收缩做出反应尚不清楚。本文利用缺血性神经阻滞(INB)技术建立了急性手部缺失模型,并记录了11名健康受试者的64通道脑电信号,以INB状态和电流强度为因子,进行了2×2因子设计方案。在INB之前和INB期间,通过计算Beta波段事件相关非同步(Beta ERD)模式和自适应定向传递函数(ADTF)的时变功能连接,量化了NMES诱发的感觉运动皮层活动的变化。急性手部 "缺失 "导致 NMES 诱导的 Beta ERD 在同侧占主导地位,在地形图上有两种电流强度,即同侧的 Beta ERD 明显高于对侧(p<0.05)。
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Beta Changes Induced by Acute Hand Loss Model during NMES.

Neuromuscular electrical stimulation (NMES) has been demonstrated to effectively modulate cortical activities by evoking muscle contraction in upper limb and generating joint movements, which showed an excellent performance in motor rehabilitation. However, due to hand loss and cortical function reorganization induced by hand amputation, how neural activities in sensorimotor cortex response to NMES-evoked muscle contraction in the end of an amputation stump is not clear. In this paper, Ischemic nerve block (INB) technique was used to build an acute hand loss model, and 64-channel EEG signals were recorded from 11 healthy subjects to perform a 2×2 factorial design protocol, with the INB state and the current intensity as factors. The changes of NMES-evoked sensorimotor cortical activities were quantified by computing Beta-band event-related desynchronization (Beta ERD) patterns and the time-varying functional connectivity using adaptive directed transfer function (ADTF) before and during INB. The acute hand "loss" resulted in ipsilateral dominance of Beta ERD induced by NMES with two current intensities in the topographic maps, that is, ipsilateral Beta ERD was significantly higher than that the contralateral one (p<0.05). However, before INB, Beta ERD in the contralateral sensorimotor cortex induced by NMES above motor threshold was significantly higher than that in the ipsilateral area (p< 0.01). Meanwhile, whatever before or during INB, clustering coefficients of the ADTF network in sensorimotor cortex showed temporal dynamics during two NMES tasks. During INB, NMES above motor threshold-evoked lower clustering coefficients of the time-varying network in sensorimotor cortex than that before INB (p<0.05). The present results suggest that the loss of the hand proprioception will degrade cortical activities in the contralateral area, and increase cortical activities in the ipsilateral area compensatively responding to NMES. This finding may be particularly important to improve the reconstruction of the proprioception function of hand prosthesis.

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