Mizuhara Hiroaki, Yamaguchi Yoko
Graduate School of Natural Science and Technology, Okayama University, 3-1-1, Tsusima-naka, Okayama-shi, Okayama 700-8530, Japan.
Neuroimage. 2007 May 15;36(1):232-44. doi: 10.1016/j.neuroimage.2007.02.026. Epub 2007 Feb 27.
Dynamic networking of brain regions is suggested to be one of the key factors involved in various brain computations. Central executive function typically requires instantaneous coordination among the medial prefrontal regions and other distant regions, depending on the on-going task situation. In human scalp-recorded electroencephalography (EEG), the medial prefrontal area is estimated to be the current source of the theta rhythm, while there is no direct evidence that the theta rhythm is involved in the dynamic networking of central executive circuits. Here we hypothesize that the central executive circuit over the prefrontal and task-related cortices is dynamically linked by theta synchronization. By using simultaneous functional magnetic resonance imaging (fMRI) and EEG, we elucidated cortical circuits emerging with theta phase synchronization during free pacing repeated subtraction. Theta phase synchronization in the scalp EEG was found to emerge at two major clusters of electrode pairs, between the right frontal and left parietal sites and between the frontal and right parietal sites. The phase synchronization of two clusters is accompanied by fMRI responses in the cortical regions responsible for central executive function, working memory, visual imagery and cognitive action sequence. Here we report the first evidence that theta phase synchronization dynamically coordinates the central executive circuits, including the medial prefrontal cortex and relevant cortical regions.
大脑区域的动态网络被认为是参与各种大脑计算的关键因素之一。中央执行功能通常需要内侧前额叶区域与其他远处区域之间的即时协调,这取决于当前的任务情况。在人类头皮记录的脑电图(EEG)中,内侧前额叶区域被估计是θ节律的当前来源,然而,目前尚无直接证据表明θ节律参与中央执行回路的动态网络。在此,我们假设前额叶和与任务相关的皮层上的中央执行回路通过θ同步动态连接。通过同时使用功能磁共振成像(fMRI)和EEG,我们阐明了在自由节奏重复减法过程中出现的与θ相位同步相关的皮层回路。发现在头皮EEG中,θ相位同步出现在两个主要的电极对簇中,分别位于右侧额叶和左侧顶叶部位之间以及额叶和右侧顶叶部位之间。这两个簇的相位同步伴随着负责中央执行功能、工作记忆、视觉表象和认知动作序列的皮层区域的fMRI反应。在此,我们报告了首个证据,即θ相位同步动态协调包括内侧前额叶皮层和相关皮层区域在内的中央执行回路。