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通过交叉频率耦合实现连贯通信。

Communication Through Coherence by Means of Cross-frequency Coupling.

作者信息

González Joaquín, Cavelli Matias, Mondino Alejandra, Rubido Nicolás, Bl Tort Adriano, Torterolo Pablo

机构信息

Departamento de Fisiología, Facultad de Medicina, Universidad de la República, Montevideo 11200, Uruguay.

Departamento de Fisiología, Facultad de Medicina, Universidad de la República, Montevideo 11200, Uruguay; Department of Psychiatry, University of Wisconsin, Madison, WI, USA.

出版信息

Neuroscience. 2020 Nov 21;449:157-164. doi: 10.1016/j.neuroscience.2020.09.019. Epub 2020 Sep 12.

Abstract

The theory of communication through coherence (CTC) posits the synchronization of brain oscillations as a key mechanism for information sharing and perceptual binding. In a parallel literature, hippocampal theta activity (4-10 Hz) has been shown to modulate the appearance of neocortical fast gamma oscillations (100-150 Hz), a phenomenon known as cross-frequency coupling (CFC). Even though CFC has also been previously associated with information routing, it remains to be determined whether it directly relates to CTC. In particular, for the theta-fast gamma example at hand, a critical question is to know if the phase of the theta cycle influences gamma synchronization across the neocortex. To answer this question, we combined CFC (modulation index) and CTC (phase-locking value) metrics in order to detect the modulation of the cross-regional high-frequency synchronization by the phase of slower oscillations. Upon applying this method, we found that the inter-hemispheric synchronization of neocortical fast gamma during REM sleep depends on the instantaneous phase of the theta rhythm. These results show that CFC is likely to aid long-range information transfer by facilitating the synchronization of faster rhythms, thus consistent with classical CTC views.

摘要

通过相干性进行通信的理论(CTC)假定大脑振荡的同步是信息共享和知觉捆绑的关键机制。在相关文献中,海马体θ活动(4 - 10赫兹)已被证明可调节新皮层快速γ振荡(100 - 150赫兹)的出现,这一现象被称为跨频率耦合(CFC)。尽管CFC此前也与信息路由相关,但它是否直接与CTC相关仍有待确定。特别是对于手头的θ - 快速γ的例子,一个关键问题是要知道θ周期的相位是否会影响新皮层中γ的同步。为了回答这个问题,我们结合了CFC(调制指数)和CTC(锁相值)指标,以检测较慢振荡的相位对跨区域高频同步的调制。应用此方法后,我们发现快速眼动睡眠期间新皮层快速γ的半球间同步取决于θ节律的瞬时相位。这些结果表明,CFC可能通过促进更快节律的同步来辅助远程信息传递,因此与经典的CTC观点一致。

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