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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Effects of Transcranial Static Magnetic Stimulation on Motor Cortex Evaluated by Different TMS Waveforms and Current Directions
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Effects of Transcranial Static Magnetic Stimulation on Motor Cortex Evaluated by Different TMS Waveforms and Current Directions

机译:经颅静态刺激对不同TMS波形和电流方向评估电机皮层的影响

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摘要

Transcranial static magnetic stimulation (tSMS) modulates cortical excitability probably by interacting with the GABA-glutamate intracortical balance. Different transcranial magnetic stimulation (TMS) waveforms probe distinct GABA-mediated cortical inhibition networks. The goal of the present work is to further characterize tSMS-induced changes in motor cortex reactivity and inhibition-excitation (I/E) balance. We hypothesized that tSMS affects particular cortical networks and thus, the effects of tSMS would be different depending on the TMS waveform used to assess its results. 23 healthy young adults completed two sessions of real or sham tSMS. The order of the sessions was randomized across participants. Motor evoked potentials (MEPs), cortical silent period (CSP), short- and long-interval intracortical inhibition (SICI and LICI), and intracortical facilitation (ICF) were assessed with TMS monophasic posterior-anterior (mono(PA); n = 9), monophasic anterior-posterior (mono(AP); n = 7), or biphasic (bi(AP-PA); n = 7) pulses. Repeated measures analyses of variance and appropriate pairwise comparisons were performed for each TMS measure. After 15 min of real tSMS, the MEP amplitudes decreased compared to sham and baseline, SICI and LICI showed greater inhibition, and a tendency towards longer CSPs and less facilitation was found. These results were only observed with mono(P)(A) TMS. MEP amplitude increased compared to sham with mono(AP) TMS, with no clear changes in general intracortical I/E balance. Biphasic TMS was not able to capture any effects of tSMS. The results show that the effects of tSMS on cortical excitability and inhibition involve specific interneuron circuits that are selectively activated by mono(P)(A) TMS. (C) 2019 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:经颅静电磁刺激(TSMS)可能通过与GABA-谷氨酸的肠道平衡相互作用来调节皮质兴奋性。不同的经颅磁刺激(TMS)波形探针不同的GABA介导的皮质抑制网络。本作作品的目的是进一步表征TSMS诱导的电动机皮质反应性和抑制激发(I / E)平衡的变化。我们假设TSMS影响特定的皮质网络,因此,根据用于评估其结果的TMS波形,TSM的效果将不同。 23个健康的年轻成年人完成了真实或假TSM的两次会议。会议的顺序在参与者中随机化。用TMS单表单次 - 前跖(MONO(PA); n =,评估电机诱发电位(MEPS),皮质静音时段(CSP),短期和长期间的内耳动术抑制(SICI和LICI)和鞘内促进(ICF); n = 9),单表前后 - 后(单声道(AP); n = 7),或双相(BI(AP-PA); n = 7)脉冲。对每个TMS测量进行反复测量方差和适当的成对比较分析。在真实TSM的15分钟后,与假和基线相比,MEP振幅减少,SICI和LICI表现出更大的抑制,并且发现了更长的CSP和更少的便利化趋势。这些结果仅用单体(P)(a)TMS观察。与Mono(AP)TMS的假振幅相比,MEP幅度增加,通常对一般的内部I / E平衡没有明确的变化。双相TM不能捕获TSM的任何效果。结果表明,TSM对皮质兴奋性和抑制的影响涉及由单核(P)(A)TMS选择性地激活的特定的中间电路。 (c)2019年IBRO。 elsevier有限公司出版。保留所有权利。

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