Song Penghui, Lin Hua, Liu Chunyan, Jiang Yuanling, Lin Yicong, Xue Qing, Xu Peng, Wang Yuping
Department of Neurology, Xuanwu Hospital, Capital Medical University, Beijing, China.
Key Laboratory for Neuroinformation of Ministry of Education, School of Life Science and Technology, University of Electronic Science and Technology of China, Chengdu, China.
Front Neuroinform. 2019 Apr 3;13:22. doi: 10.3389/fninf.2019.00022. eCollection 2019.
The interaction between dorsal and ventral attention networks (VANs) is mediated by the middle frontal gyrus (MFG), which is functionally connected to both networks. However, the direct role of the MFG in selective and sustained attention remains controversial. In the current study, we used transcranial magnetic stimulation (TMS) and electroencephalography (EEG) to probe the connectivity dynamic changes of MFG-associated regions during different attention modes. The participants underwent visual, selective, and sustained attention tasks to observe TMS-induced network changes. Twenty healthy participants received single-pulse TMS over the left or right MFG during tasks, while synchronous EEG data was acquired. Behavioral results were recorded and time-varying brain network analyses were performed. We found that the MFG is involved in attention processing and that sustained attention was preferentially controlled by the right MFG. Moreover, compared with the right hemisphere, the left hemisphere was associated with selective attention tasks. Visual and selective attention tasks induced MFG-related changes in network nodes were within the left hemisphere; however, sustained attention induced changes in network nodes were in the bilateral posterior MFG. Our findings indicated that the MFG plays a crucial role in regulating attention networks. In particular, TMS-induced MFG alterations influenced key nodes of the time-varying brain network, leading to the reorganization of brain network modules.
背侧和腹侧注意网络(VANs)之间的相互作用由额中回(MFG)介导,MFG在功能上与这两个网络相连。然而,MFG在选择性和持续性注意中的直接作用仍存在争议。在本研究中,我们使用经颅磁刺激(TMS)和脑电图(EEG)来探究不同注意模式下MFG相关区域的连接动态变化。参与者接受视觉、选择性和持续性注意任务,以观察TMS诱发的网络变化。20名健康参与者在任务期间接受左侧或右侧MFG的单脉冲TMS,同时采集同步EEG数据。记录行为结果并进行时变脑网络分析。我们发现MFG参与了注意加工,且持续性注意主要由右侧MFG控制。此外,与右侧半球相比,左侧半球与选择性注意任务相关。视觉和选择性注意任务诱发的与MFG相关的网络节点变化在左侧半球内;然而,持续性注意诱发的网络节点变化在双侧后MFG。我们的研究结果表明,MFG在调节注意网络中起关键作用。特别是,TMS诱发的MFG改变影响了时变脑网络的关键节点,导致脑网络模块的重组。