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Task-sensitive reconfiguration of corticocortical 6-20 Hz oscillatory coherence in naturalistic human performance

机译:在自然的人类行为中皮层皮质6-20 Hz振荡相干的任务敏感型重构

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摘要

Electrophysiological oscillatory coherence between brain regions has been proposed to facilitate functional long-range connectivity within neurocognitive networks. This notion is supported by intracortical recordings of coherence in singled-out corticocortical connections in the primate cortex. However, the manner in which this operational principle manifests in the task-sensitive connectivity that supports human naturalistic performance remains undercharacterized. Here, we demonstrate task-sensitive reconfiguration of global patterns of coherent connectivity in association with a set of easier and more demanding naturalistic tasks, ranging from picture comparison to speech comprehension and object manipulation. Based on whole-cortex neuromagnetic recording in healthy behaving individuals, the task-sensitive component of long-range corticocortical coherence was mapped at spectrally narrow-band oscillatory frequencies between 6 and 20 Hz (theta to alpha and low-beta bands). This data-driven cortical mapping unveiled markedly distinct and topologically task-relevant spatiospectral connectivity patterns for the different tasks. The results demonstrate semistable oscillatory states relevant for neurocognitive processing. The present findings decisively link human behavior to corticocortical coherence at oscillatory frequencies that are widely thought to convey long-range, feedback-type neural interaction in cortical functional networks. Hum Brain Mapp 36:2455-2469, 2015. (c) 2015 Wiley Periodicals, Inc.
机译:已经提出了脑区域之间的电生理振荡相干性,以促进神经认知网络内的功能性远程连接。灵长类皮层中单层皮层皮质连接中的相干性的皮层内记录支持了这一观点。但是,这种操作原理在支持人类自然主义表现的任务敏感型连接中表现出来的方式仍然欠佳。在这里,我们演示了与一组更简单,更苛刻的自然主义任务相关的,全局一致的连接模式的任务敏感型重新配置,从图片比较到语音理解和对象操作。基于健康行为个体的全皮质神经磁记录,远程皮层相干性的任务敏感成分映射到6至20 Hz之间的频谱窄带振荡频率(θ到α和低β波段)。这种数据驱动的皮质映射揭示了针对不同任务的明显不同且与任务相关的拓扑空间光谱连通性模式。结果表明与神经认知处理有关的半稳定振荡状态。目前的发现决定性地将人类行为与振荡频率的皮层皮层连贯性联系起来,人们普遍认为该频率在皮层功能网络中传达远程,反馈型神经相互作用。嗡嗡声大脑Mapp 36:2455-2469,2015.(c)2015 Wiley Periodicals,Inc.

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