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Dynamic links between theta executive functions and alpha storage buffers in auditory and visual working memory

机译:theta执行功能与听觉和视觉工作记忆中的alpha存储缓冲区之间的动态链接

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摘要

Working memory (WM) tasks require not only distinct functions such as a storage buffer and central executive functions, but also coordination among these functions. Neuroimaging studies have revealed the contributions of different brain regions to different functional roles in WM tasks; however, little is known about the neural mechanism governing their coordination. Electroencephalographic (EEG) rhythms, especially theta and alpha, are known to appear over distributed brain regions during WM tasks, but the rhythms associated with task-relevant regional coupling have not been obtained thus far. In this study, we conducted time–frequency analyses for EEG data in WM tasks that include manipulation periods and memory storage buffer periods. We used both auditory WM tasks and visual WM tasks. The results successfully demonstrated function-specific EEG activities. The frontal theta amplitudes increased during the manipulation periods of both tasks. The alpha amplitudes increased during not only the manipulation but also the maintenance periods in the temporal area for the auditory WM and the parietal area for the visual WM. The phase synchronization analyses indicated that, under the relevant task conditions, the temporal and parietal regions show enhanced phase synchronization in the theta bands with the frontal region, whereas phase synchronization between theta and alpha is significantly enhanced only within the individual areas. Our results suggest that WM task-relevant brain regions are coordinated by distant theta synchronization for central executive functions, by local alpha synchronization for the memory storage buffer, and by theta–alpha coupling for inter-functional integration.
机译:工作记忆(WM)任务不仅需要诸如存储缓冲区和中央执行器功能之类的独特功能,而且还需要这些功能之间的协调。神经影像学研究揭示了不同的大脑区域对WM任务中不同功能角色的贡献。然而,对于控制它们协调的神经机制知之甚少。脑电图(EEG)节律,尤其是theta和alpha,在WM任务期间出现在分布的大脑区域,但是到目前为止,尚未获得与任务相关的区域耦合相关的节律。在这项研究中,我们对WM任务中的EEG数据进行了时频分析,其中包括操纵周期和内存存储缓冲周期。我们同时使用了听觉WM任务和视觉WM任务。结果成功地证明了特定功能的脑电活动。在两个任务的操纵期间,额叶θ幅度增加。在听觉WM的颞区和视觉WM的顶区,不仅在操纵期间而且在维持期间,α振幅都增加了。相位同步分析表明,在相关任务条件下,时间和顶区在theta波段中与额叶区域显示出增强的相位同步,而theta和alpha之间的相位同步仅在单个区域内显着增强。我们的结果表明,与WM任务相关的大脑区域通过中央执行功能的远距离theta同步,内存存储缓冲区的局部alpha同步以及功能间集成的theta-alpha耦合进行协调。

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