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人类大脑中的大规模通讯是通过 alpha 相干节律性调节的。

Large-Scale Communication in the Human Brain Is Rhythmically Modulated through Alpha Coherence.

机构信息

Surgical Neurology Branch, NINDS, National Institutes of Health, Bethesda, MD 20892, USA.

Office of the Clinical Director, NINDS, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

Curr Biol. 2019 Sep 9;29(17):2801-2811.e5. doi: 10.1016/j.cub.2019.07.014. Epub 2019 Aug 15.

Abstract

Recent evidence has suggested that coherent neuronal oscillations may serve as a gating mechanism for flexibly modulating communication between brain regions. For this to occur, such oscillations should be robust and coherent between brain regions that also demonstrate time-locked correlations, with time delays that match the phase delays of the coherent oscillations. Here, by analyzing functional connectivity in both the time and frequency domains, we demonstrate that alpha oscillations satisfy these constraints and are well suited for modulating communication over large spatial scales in the human brain. We examine intracranial EEG in the human temporal lobe and find robust alpha oscillations that are coherent between brain regions with center frequencies that are consistent within each individual participant. Regions demonstrating coherent narrowband oscillations also exhibit time-locked broadband correlations with a consistent time delay, a requirement for an efficient communication channel. The phase delays of the coherent alpha oscillations match the time delays of the correlated components, and importantly, both broadband correlations and neuronal spiking activity are modulated by the phase of the oscillations. These results are specific to the alpha band and build upon emerging evidence suggesting that alpha oscillations may play an active role in cortical function. Our data therefore provide evidence that large-scale communication in the human brain may be rhythmically modulated by alpha oscillations.

摘要

最近的证据表明,相干的神经元振荡可能作为一种门控机制,灵活地调节大脑区域之间的通讯。为了实现这一点,这些振荡应该在表现出时间锁定相关性的大脑区域之间具有稳健性和相干性,并且时间延迟与相干振荡的相位延迟相匹配。在这里,通过在时间和频率域中分析功能连接,我们证明了 alpha 振荡满足这些约束条件,非常适合在人类大脑中调节大空间尺度上的通讯。我们检查了人类颞叶的颅内 EEG,并发现了在大脑区域之间具有稳健的 alpha 振荡,其中心频率在每个个体参与者内是一致的。表现出相干窄带振荡的区域还表现出与一致时间延迟的时间锁定宽带相关性,这是有效通讯通道的要求。相干 alpha 振荡的相位延迟与相关分量的时间延迟相匹配,重要的是,宽带相关性和神经元放电活动都受到振荡相位的调制。这些结果是特定于 alpha 频带的,并建立在新兴证据的基础上,表明 alpha 振荡可能在皮质功能中发挥积极作用。因此,我们的数据提供了证据,表明人类大脑中的大规模通讯可能由 alpha 振荡节律性调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08a9/6736747/218388c5f864/nihms-1534690-f0001.jpg

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