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首页> 外文期刊>NeuroImage >Phase-amplitude coupling at the organism level: The amplitude of spontaneous alpha rhythm fluctuations varies with the phase of the infra-slow gastric basal rhythm
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Phase-amplitude coupling at the organism level: The amplitude of spontaneous alpha rhythm fluctuations varies with the phase of the infra-slow gastric basal rhythm

机译:在生物体水平下相振幅耦合:自发α节奏波动的幅度随着红外胃基底节奏的阶段而变化

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摘要

A fundamental feature of the temporal organization of neural activity is phase-amplitude coupling between brain rhythms at different frequencies, where the amplitude of a higher frequency varies according to the phase of a lower frequency. Here, we show that this rule extends to brain-organ interactions. We measured both the infra-slow (similar to 0.05 Hz) rhythm intrinsically generated by the stomach the gastric basal rhythm using electrogastrography, and spontaneous brain dynamics with magnetoencephalography during resting-state with eyes open. We found significant phase-amplitude coupling between the infra-slow gastric phase and the amplitude of the cortical alpha rhythm (10-11 Hz), with gastric phase accounting for 8% of the variance of alpha rhythm amplitude fluctuations. Gastric-alpha coupling was localized to the right anterior insula, and bilaterally to occipito-parietal regions. Transfer entropy, a measure of directionality of information transfer, indicates that gastric-alpha coupling is due to an ascending influence from the stomach to both the right anterior insula and occipito-parietal regions. Our results show that phase-amplitude coupling so far only observed within the brain extends to brain-viscera interactions. They further reveal that the temporal structure of spontaneous brain activity depends not only on neuron and network properties endogenous to the brain, but also on the slow electrical rhythm generated by the stomach. (C) 2016 The Authors. Published by Elsevier Inc.
机译:神经活动的时间组织的一个基本特征是在不同的频率脑节律之间相位 - 幅度耦合,其中较高的频率的振幅根据较低频率的相位而变化。在这里,我们表明,这种规则延伸到大脑器官相互作用。我们测量两个红外慢(类似0.05赫兹)静息状态睁眼期间由胃电图用胃基础节奏,和与脑磁图自发脑动力学固有产生的节奏。我们发现,红外慢胃相和皮质α节奏(10-11赫兹)的振幅之间显著相位 - 幅度耦合,胃癌相占α节奏幅度波动的方差的8%。胃-α偶联定位于右侧前脑岛,和双边到枕顶区域。转印熵,信息传输的方向性的量度,指示胃-α偶联是由于从胃到右侧前脑岛和枕顶区二者的上升的影响。我们的研究结果表明,相幅联接器内大脑延伸到​​大脑,内脏相互作用至今只观察到。他们还揭示了自发大脑活动的时间结构不仅取决于内源性的大脑,而且对胃产生的缓慢节奏电器神经元和网络性能。 (c)2016年作者。 elsevier公司出版

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