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α 波段皮质-皮质相位同步与运动网络中的有效连通性相关。

Alpha-band cortico-cortical phase synchronization is associated with effective connectivity in the motor network.

机构信息

Neurophysiology Lab, IRCCS Istituto Centro San Giovanni di Dio Fatebenefratelli, Brescia, BS, Italy.

Center for Mind/Brain Sciences - CIMeC, University of Trento, Rovereto, TN, Italy.

出版信息

Clin Neurophysiol. 2021 Oct;132(10):2473-2480. doi: 10.1016/j.clinph.2021.06.025. Epub 2021 Jul 30.

Abstract

OBJECTIVE

Communication-through-coherence proposes that the phase synchronization (PS) of neural oscillations between cortical areas supports neural communication. In this study, we exploited transcranial magnetic stimulation (TMS)-evoked potentials (TEPs) to test this hypothesis at the macroscale level, i.e., whether PS between cortical areas supports interarea communication. TEPs are electroencephalographic (EEG) responses time-locked to TMS pulses reflecting interarea communication, as they are generated by the transmission of neural activity from the stimulated area to connected regions. If interarea PS is important for communication, it should be associated with the TEP amplitude in the connected areas.

METHODS

TMS was delivered over the left primary motor cortex (M1) of fourteen healthy volunteers, and 70-channel EEG was recorded. Early TEP components were source-localized to identify their generators, i.e., distant brain regions activated by M1 through effective connections. Next, linear regressions were used to test the relationship between the TEP amplitude and the pre-stimulus PS between the M1 and the connected regions in four frequency bands (range 4-45 Hz).

RESULTS

Pre-stimulus interarea PS in the alpha-band was positively associated with the amplitude of early TEP components, namely, the N15 (ipsilateral supplementary motor area), P25 (contralateral M1) and P60 (ipsilateral parietal cortex).

CONCLUSIONS

Alpha-band PS predicts the response amplitude of the distant brain regions effectively connected to M1.

SIGNIFICANCE

Our study supports the role of EEG-PS in interarea communication, as theorized by communication-through-coherence.

摘要

目的

相干传递假说提出,皮质区之间的神经振荡相位同步(PS)支持神经通讯。在这项研究中,我们利用经颅磁刺激(TMS)诱发的电位(TEP)在宏观水平上检验了这一假说,即皮质区之间的 PS 是否支持区间通讯。TEP 是与 TMS 脉冲时间锁定的脑电图(EEG)响应,反映了区间通讯,因为它们是由从刺激区到连接区的神经活动传递产生的。如果区间 PS 对通讯很重要,那么它应该与连接区的 TEP 幅度相关。

方法

我们对 14 名健康志愿者的左侧初级运动皮层(M1)进行了 TMS 刺激,并记录了 70 通道 EEG。早期 TEP 成分被定位到源,以确定它们的发生器,即 M1 通过有效连接激活的远距离脑区。接下来,使用线性回归来测试四个频带(范围 4-45 Hz)中 M1 和连接区之间的预刺激 PS 与 TEP 幅度之间的关系。

结果

alpha 频带的预刺激区间 PS 与早期 TEP 成分的幅度呈正相关,即 N15(同侧辅助运动区)、P25(对侧 M1)和 P60(同侧顶叶皮层)。

结论

alpha 频带 PS 预测了与 M1 有效连接的远距离脑区的反应幅度。

意义

我们的研究支持了相干传递假说中 EEG-PS 在区间通讯中的作用。

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