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不同的耦合模式介导皮层跨频率相互作用。

Different coupling modes mediate cortical cross-frequency interactions.

作者信息

Helfrich Randolph F, Herrmann Christoph S, Engel Andreas K, Schneider Till R

机构信息

Department of Neurophysiology and Pathophysiology, University Medical Center Hamburg-Eppendorf, 20246 Hamburg, Germany; Helen Wills Neuroscience Institute, University of California Berkeley, Berkeley, CA 94720, USA.

Experimental Psychology Lab, Center for excellence 'Hearing4all', European Medical School, University of Oldenburg, 26111 Oldenburg, Germany; Research Center Neurosensory Science, University of Oldenburg, 26111 Oldenburg, Germany.

出版信息

Neuroimage. 2016 Oct 15;140:76-82. doi: 10.1016/j.neuroimage.2015.11.035. Epub 2015 Nov 23.

Abstract

Cross-frequency coupling (CFC) has been suggested to constitute a highly flexible mechanism for cortical information gating and processing, giving rise to conscious perception and various higher cognitive functions in humans. In particular, it might provide an elegant tool for information integration across several spatiotemporal scales within nested or coupled neuronal networks. However, it is currently unknown whether low-frequency (theta/alpha) or high-frequency gamma oscillations orchestrate cross-frequency interactions, raising the question of who is master and who is slave. While correlative evidence suggested that at least two distinct CFC modes exist, namely, phase-amplitude-coupling (PAC) and amplitude-envelope correlations (AEC), it is currently unknown whether they subserve distinct cortical functions. Novel non-invasive brain stimulation tools, such as transcranial alternating current stimulation (tACS), now provide the unique opportunity to selectively entrain the low- or high-frequency component and study subsequent effects on CFC. Here, we demonstrate the differential modulation of CFC during selective entrainment of alpha or gamma oscillations. Our results reveal that entrainment of the low-frequency component increased PAC, where gamma power became preferentially locked to the trough of the alpha oscillation, while gamma-band entrainment enhanced AECs and reduced alpha power. These results provide causal evidence for the functional role of coupled alpha and gamma oscillations for visual processing.

摘要

交叉频率耦合(CFC)被认为是一种高度灵活的机制,用于皮层信息的门控和处理,从而产生人类的意识感知和各种高级认知功能。特别是,它可能为嵌套或耦合神经网络中跨多个时空尺度的信息整合提供一种精妙的工具。然而,目前尚不清楚低频(theta/alpha)或高频伽马振荡是否主导交叉频率相互作用,这就引出了谁主谁从的问题。虽然相关证据表明至少存在两种不同的CFC模式,即相位-振幅耦合(PAC)和振幅-包络相关性(AEC),但目前尚不清楚它们是否服务于不同的皮层功能。新型非侵入性脑刺激工具,如经颅交流电刺激(tACS),现在提供了独特的机会来选择性地诱捕低频或高频成分,并研究其对CFC的后续影响。在这里,我们展示了在选择性诱捕alpha或伽马振荡期间CFC的差异调制。我们的结果表明,低频成分的诱捕增加了PAC,其中伽马功率优先锁定在alpha振荡的波谷,而伽马波段的诱捕增强了AEC并降低了alpha功率。这些结果为耦合的alpha和伽马振荡在视觉处理中的功能作用提供了因果证据。

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