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检测人初级运动皮层中高频振荡的皮质回路:一项 TMS-tACS 研究。

Detecting cortical circuits resonant to high-frequency oscillations in the human primary motor cortex: a TMS-tACS study.

机构信息

IRCCS Neuromed, Via Atinense 18, 86077, Pozzilli, (IS), Italy.

Department of Neuroscience, Biomedicine and Movement Sciences, University of Verona, P.le L.A. Scuro 10, 37134, Verona, Italy.

出版信息

Sci Rep. 2020 May 6;10(1):7695. doi: 10.1038/s41598-020-64717-7.

Abstract

Corticospinal volleys evoked by transcranial magnetic stimulation (TMS) over the primary motor cortex (M1) consist of high-frequency bursts (≈667 and ≈333 Hz). However, intracortical circuits producing such corticospinal high-frequency bursts are unknown. We here investigated whether neurons activated by single TMS pulses over M1 are resonant to high-frequency oscillations, using a combined transcranial alternating current stimulation (tACS)-TMS approach. We applied 667, 333 Hz or sham-tACS and, concurrently, we delivered six single-pulse TMS protocols using monophasic or biphasic pulses, different stimulation intensities, muscular states, types and orientations of coils. We recorded motor evoked potentials (MEPs) before, during and after tACS. 333 Hz tACS facilitated MEPs evoked by biphasic TMS through a figure-of-eight coil at active motor threshold (AMT), and by monophasic TMS with anterior-to-posterior-induced current in the brain. 333 Hz tACS also facilitated MEPs evoked by monophasic TMS through a circular coil at AMT, an effect that weakly persisted after the stimulation. 667 Hz tACS had no effects. 333 Hz, but not 667 Hz, tACS may have reinforced the synchronization of specific neurons to high-frequency oscillations enhancing this activity, and facilitating MEPs. Our findings suggest that different bursting modes of corticospinal neurons are produced by separate circuits with different oscillatory properties.

摘要

经颅磁刺激(TMS)刺激初级运动皮层(M1)诱发的皮质脊髓反射由高频爆发(≈667 和 ≈333 Hz)组成。然而,产生这种皮质脊髓高频爆发的皮质内回路尚不清楚。我们使用经颅交流电刺激(tACS)-TMS 联合方法,研究了 M1 单个 TMS 脉冲激活的神经元是否对高频振荡产生共振。我们施加了 667、333 Hz 或假 tACS,并同时使用单相或双相脉冲、不同刺激强度、肌肉状态、线圈类型和方向,应用了六种单脉冲 TMS 方案。我们在 tACS 之前、期间和之后记录运动诱发电位(MEP)。333 Hz tACS 通过八边形线圈在活动运动阈值(AMT)下增强双相 TMS 诱发的 MEP,通过大脑中从前向后诱导电流的单相 TMS 增强 MEP。333 Hz tACS 还通过 AMT 处的圆形线圈增强单相 TMS 诱发的 MEP,这种效应在刺激后仍较弱地持续存在。667 Hz tACS 没有效果。333 Hz,但不是 667 Hz,tACS 可能增强了特定神经元到高频振荡的同步,增强了这种活动并促进了 MEP。我们的发现表明,皮质脊髓神经元的不同爆发模式是由具有不同振荡特性的单独回路产生的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41c8/7203184/14cfc106d44f/41598_2020_64717_Fig1_HTML.jpg

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