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人类在导航心理意象过程中θ频段的全局同步。

Global synchronization in the theta band during mental imagery of navigation in humans.

作者信息

Li Yang, Umeno Katsumi, Hori Etsuro, Takakura Hiromasa, Urakawa Susumu, Ono Taketoshi, Nishijo Hisao

机构信息

System Emotional Science, Graduate School of Medicine and Pharmaceutical Sciences, University of Toyama, Sugitani 2630, Toyama-ken, Toyama 930-0194, Japan.

出版信息

Neurosci Res. 2009 Sep;65(1):44-52. doi: 10.1016/j.neures.2009.05.004. Epub 2009 May 22.

Abstract

Visual mental imagery is critical for successfully navigating the environment, which in turn activates many cortical regions simultaneously. Theta oscillation is implicated in navigation and brain synchronization. In this study, EEG coherence was analyzed during 3 tasks: subjects (1) mentally simulated jogging along the walls of a gym and pressed a button when they imagined arriving at a corner (jogging imagery task), (2) thought of and memorized one digit after pressing a button 5 times and recalled the digits sequentially after pressing the button again (digit imagery task), and (3) pressed a button (button pressing task). The results indicated that theta-wave (4-8 Hz) power was significantly higher in the frontal and parietal regions during the digit and jogging imagery tasks. Coherence at the theta band showed almost no differences between the button pressing and digit imagery tasks. Coherence between the distant regions, especially between the frontal and parieto-occipital regions and between interhemispheric regions, was significantly higher during the jogging imagery task. Increase in theta power during the jogging imagery task reflects working memory load to manipulate internal information. Theta oscillation appears to play an important role in large-scale synchronization to form the functional neuronal networks required for mental navigation.

摘要

视觉心理意象对于成功在环境中导航至关重要,而这反过来又会同时激活许多皮质区域。θ振荡与导航和大脑同步有关。在本研究中,分析了三项任务期间的脑电图相干性:受试者(1)在脑海中模拟沿着体育馆墙壁慢跑,当想象到达一个角落时按下按钮(慢跑意象任务);(2)在按下按钮5次后想出并记住一个数字,再次按下按钮后依次回忆这些数字(数字意象任务);以及(3)按下按钮(按钮按压任务)。结果表明,在数字和慢跑意象任务期间,额叶和顶叶区域的θ波(4 - 8赫兹)功率显著更高。按钮按压任务和数字意象任务之间,θ频段的相干性几乎没有差异。在慢跑意象任务期间,远距离区域之间,尤其是额叶与顶枕叶区域之间以及半球间区域之间的相干性显著更高。慢跑意象任务期间θ功率的增加反映了操纵内部信息的工作记忆负荷。θ振荡似乎在大规模同步中发挥重要作用,以形成心理导航所需的功能性神经元网络。

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