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经颅磁刺激后静息期的机制。来自硬膜外记录的证据。

Mechanism of the silent period following transcranial magnetic stimulation. Evidence from epidural recordings.

作者信息

Chen R, Lozano A M, Ashby P

机构信息

Division of Neurology and Playfair Neuroscience Unit, Toronto Western Hospital, University Health Network, University of Toronto, Ontario, Canada.

出版信息

Exp Brain Res. 1999 Oct;128(4):539-42. doi: 10.1007/s002210050878.

Abstract

We investigated the nature of the silent period (SP) following transcranial magnetic stimulation by recording corticospinal volleys in a patient with implanted cervical epidural electrodes. Single suprathreshold test stimuli and paired stimuli at interstimulus intervals (ISIs) of 50-200 ms were delivered while the subject maintained a constant background contraction. The silent period duration from a single test stimulus was 357+/-62 ms. The test motor-evoked potentials were markedly reduced at all the ISIs tested. The I (indirect) waves induced by the test stimulus were largely unchanged at an ISI of 50 ms, suggesting that there was little change in motor cortex excitability. However, the corticospinal volleys, especially the late I waves, were substantially reduced at ISIs of 100 ms, 150 ms, and 200 ms. Our findings suggest that the early part of the SP is mainly due to spinal mechanisms, while the late part of the SP is related to reduced motor cortex excitability.

摘要

我们通过记录一位植入颈段硬膜外电极患者的皮质脊髓诱发电位,研究了经颅磁刺激后静息期(SP)的本质。在受试者保持持续背景收缩的同时,给予单阈上测试刺激以及间隔时间(ISI)为50 - 200毫秒的成对刺激。单次测试刺激的静息期时长为357±62毫秒。在所有测试的ISI下,测试运动诱发电位均显著降低。测试刺激诱发的I(间接)波在ISI为50毫秒时基本未变,这表明运动皮层兴奋性变化不大。然而,在ISI为100毫秒、150毫秒和200毫秒时,皮质脊髓诱发电位,尤其是晚期I波,大幅降低。我们的研究结果表明,SP的早期主要归因于脊髓机制,而SP的晚期与运动皮层兴奋性降低有关。

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