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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Phase synchronization between alpha and beta oscillations in the human electroencephalogram.
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Phase synchronization between alpha and beta oscillations in the human electroencephalogram.

机译:人类脑电图中的α和β振荡之间的相位同步。

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Coordination of neuronal oscillations generated at different frequencies has been hypothesized to be an important feature of integrative brain functions. The present study aimed at the evaluation of the cross-frequency phase synchronization between electroencephalographic alpha and beta oscillations. The amplitude and phase information were extracted from electroencephalograms recorded in 176 healthy human subjects using an analytic signal approach based on the Hilbert transform. The results reliably demonstrated the presence of phase synchronization between alpha and beta oscillations, with a maximum in the occipito-parietal areas. The phase difference between alpha and beta oscillations showed characteristic peaks at about 2 and -1 radians, which were common for many subjects and electrodes. A specific phase difference might reflect similarity in the organization and interconnections of the networks generating alpha and beta oscillations across the entire cortex. Beta oscillations, which are phase-locked to alpha oscillations--alpha-synchronous beta oscillations--were largest in the occipito-parietal area with a second smaller maximum in the frontal area, thus demonstrating a topography, which was different from the conventional alpha and beta oscillations. The strength of the alpha-synchronous beta oscillations was not exclusively defined by the amplitude of the alpha rhythm indicating that they represent a distinct feature of the spontaneous electroencephalogram, which allows for a refined discrimination of the dynamics of beta oscillations.
机译:假设以不同频率产生的神经元振荡的协调是整合性脑功能的重要特征。本研究旨在评估脑电图的α和β振荡之间的跨频相位同步。使用基于希尔伯特变换的分析信号方法,从记录在176名健康人类受试者中的脑电图中提取振幅和相位信息。结果可靠地证明了在α和β振荡之间存在相位同步,并且在枕骨顶区域最大。 α和β振荡之间的相位差在大约2和-1弧度处显示出特征峰,这是许多对象和电极所共有的。特定的相位差可能反映了网络的组织和互连的相似性,从而在整个皮质上产生了α和β振荡。相位锁定到α振荡的β振荡-α同步β振荡在枕顶壁区域最大,额叶区域的第二小最大值,从而证明了与传统α振荡不同的形貌和β振荡。 α同步β振荡的强度并非仅由α节奏的振幅来定义,这表明它们代表了自发性脑电图的独特特征,从而可以精确区分β振荡的动力学。

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