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脑振荡的跨频率耦合表明视觉运动辨别取得成功。

Cross-frequency coupling of brain oscillations indicates the success in visual motion discrimination.

作者信息

Händel Barbara, Haarmeier Thomas

机构信息

Department of Cognitive Neurology, Hertie-Institute for Clinical Brain Research, University of Tübingen, Klinikum Schnarrenberg, Tübingen, Germany.

出版信息

Neuroimage. 2009 Apr 15;45(3):1040-6. doi: 10.1016/j.neuroimage.2008.12.013. Epub 2008 Dec 25.

Abstract

Cortical activity such as recorded by EEG or MEG is characterized by ongoing rhythms that encompass a wide range of temporal and spatial scales. Recent studies have suggested an oscillatory hierarchy with faster oscillations being locked to preferred phases of underlying slower waves, a functional principle applied up to the level of action potential generation. We here tested the idea that amplitude-phase coupling between frequencies might serve the detection of weak sensory signals. To this end we recorded neuromagnetic responses during a motion discrimination task using near-threshold stimuli. Amplitude modulation of occipital high-frequency oscillations in the gamma range (63+/-5 Hz) was phase locked to a slow-frequency oscillation in the delta band (1-5 Hz). Most importantly, the strength of gamma amplitude modulation reflected the success in visual discrimination. This correlation provides evidence for the hypothesis that coupling between low- and high-frequency brain oscillations subserves signal detection.

摘要

诸如脑电图(EEG)或脑磁图(MEG)所记录的皮质活动,其特征在于持续的节律,这些节律涵盖了广泛的时间和空间尺度。最近的研究提出了一种振荡层次结构,即更快的振荡锁定在潜在较慢波的偏好相位上,这一功能原理一直应用到动作电位产生的层面。我们在此测试了频率之间的幅度-相位耦合可能有助于检测微弱感觉信号的想法。为此,我们在使用接近阈值刺激的运动辨别任务期间记录了神经磁反应。伽马波段(63±5赫兹)枕部高频振荡的幅度调制被锁定在德尔塔波段(1-5赫兹)的低频振荡相位上。最重要的是,伽马幅度调制的强度反映了视觉辨别中的成功。这种相关性为低频和高频脑振荡之间的耦合有助于信号检测这一假设提供了证据。

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