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自主运动期间皮质下低频和高频体感诱发电位的波幅降低:一项脑内记录研究

Reduction in amplitude of the subcortical low- and high-frequency somatosensory evoked potentials during voluntary movement: an intracerebral recording study.

作者信息

Insola Angelo, Le Pera Domenica, Restuccia Domenico, Mazzone Paolo, Valeriani Massimiliano

机构信息

Neurofisiopatologia, CTO, Rome, Italy.

出版信息

Clin Neurophysiol. 2004 Jan;115(1):104-11. doi: 10.1016/j.clinph.2003.08.003.

Abstract

OBJECTIVE

To investigate whether the reduction of amplitude of the scalp somatosensory evoked potentials (SEPs) during movement (gating) is due to an attenuation of the afferent volley at subcortical level.

METHODS

Median nerve SEPs were recorded from 9 patients suffering from Parkinson's disease, who underwent implant of intracerebral (IC) electrodes in the subthalamic nucleus or in the globus pallidum. SEPs were recorded from Erb's point ipsilateral to stimulation, from the scalp surface and from the IC leads, at rest and during a voluntary flexo-extension movement of the stimulated wrist. The recorded IC traces were submitted to an off-line filtering by a 300-1500 bandpass to obtain the high-frequency SEP bursts.

RESULTS

IC leads recorded a triphasic component (P1-N1-P2) from 14 to 22 ms of latency. The amplitudes of the scalp N20, P20 and N30 potentials and of the IC triphasic component were significantly decreased during movement, while the peripheral N9 amplitude remained unchanged. Also the IC bursts, whose frequency was around 1000 Hz, were reduced in amplitude by the voluntary movement.

CONCLUSIONS

Since the IC triphasic component is probably generated by neurons of the thalamic ventro-postero-lateral nucleus, which receive the somatosensory afferent volley, the P1-N1 amplitude reduction during movement suggests that the gating phenomenon involves also the subcortical structures.

摘要

目的

研究运动期间头皮体感诱发电位(SEP)波幅降低(门控现象)是否由于皮质下水平传入冲动的衰减。

方法

记录9例帕金森病患者的正中神经SEP,这些患者在丘脑底核或苍白球植入了脑内(IC)电极。在静息状态以及刺激侧腕关节进行自主屈伸运动期间,从刺激同侧的Erb点、头皮表面以及IC导联记录SEP。对记录的IC通道信号进行离线300 - 1500带通滤波,以获得高频SEP爆发信号。

结果

IC导联记录到潜伏期为14至22毫秒的三相成分(P1 - N1 - P2)。运动期间,头皮N20、P20和N30电位以及IC三相成分的波幅显著降低,而外周N9波幅保持不变。同样,频率约为1000 Hz的IC爆发信号,其波幅也因自主运动而降低。

结论

由于IC三相成分可能由丘脑腹后外侧核的神经元产生,而该核接收体感传入冲动,运动期间P1 - N1波幅降低表明门控现象也涉及皮质下结构。

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