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Phase-Amplitude Coupling of Neural Oscillations Can Be Effectively Probed with Concurrent TMS-EEG

机译:并发TMS-EEG可以有效地探测神经振荡的相位-幅度耦合

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摘要

Despite the widespread use of transcranial magnetic stimulation (TMS), knowledge of its neurophysiological mode of action is still incomplete. Recently, TMS has been proposed to synchronise neural oscillators and to thereby increase the detectability of corresponding oscillations at the population level. As oscillations in the human brain are known to interact within nested hierarchies via phase-amplitude coupling, TMS might also be able to increase the macroscopic detectability of such coupling. In a concurrent TMS-electroencephalography study, we therefore examined the technique's influence on theta-gamma, alpha-gamma, and beta-gamma phase-amplitude coupling by delivering single-pulse TMS (sTMS) and repetitive TMS (rTMS) over the left motor cortex and right visual cortex of healthy participants. The rTMS pulse trains were of 5 Hz, 11 Hz, and 23 Hz for the three coupling variations, respectively. Relative to sham stimulation, all conditions showed transient but significant increases in phase-amplitude coupling at the stimulation site. In addition, we observed enhanced coupling over various other cortical sites, with a more extensive propagation during rTMS than during sTMS. By indicating that scalp-recorded phase-amplitude coupling can be effectively probed with TMS, these findings open the door to the technique's application in manipulative dissections of such coupling during human cognition and behaviour in healthy and pathological conditions.
机译:尽管经颅磁刺激(TMS)的广泛使用,其神经生理作用方式的知识仍然不完整。近来,已经提出了TMS来同步神经振荡器,从而提高总体水平上相应振荡的可检测性。由于已知人脑中的振荡会通过相位-幅度耦合在嵌套层次结构中进行交互,因此TMS也可能能够提高这种耦合的宏观可检测性。因此,在一项并行的TMS脑电图研究中,我们通过在左马达上传递单脉冲TMS(sTMS)和重复性TMS(rTMS),检查了该技术对theta-γ,α-γ和β-γ相幅耦合的影响。健康参与者的皮层和右视皮层。对于三个耦合变化,rTMS脉冲序列分别为5 Hz,11 Hz和23 Hz。相对于假刺激,所有条件在刺激部位均表现出短暂但明显的相位-幅度耦合增加。此外,我们观察到在各种其他皮质部位的偶联增强,rTMS期间的传播比sTMS期间的传播更为广泛。通过表明可以通过TMS有效地探测头皮记录的相-幅耦合,这些发现为该技术在人的认知和行为在健康和病理条件下的操纵解剖中的应用打开了大门。

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