Suppr超能文献

前额叶θ波在注意重定向过程中调节感觉运动γ网络。

Prefrontal theta modulates sensorimotor gamma networks during the reorienting of attention.

机构信息

Department of Neurological Sciences, University of Nebraska Medical Center (UNMC), Omaha, Nebraska.

Center for Magnetoencephalography, University of Nebraska Medical Center, Omaha, Nebraska.

出版信息

Hum Brain Mapp. 2020 Feb 1;41(2):520-529. doi: 10.1002/hbm.24819. Epub 2019 Oct 17.

Abstract

The ability to execute a motor plan involves spatiotemporally precise oscillatory activity in primary motor (M1) regions, in concert with recruitment of "higher order" attentional mechanisms for orienting toward current task goals. While current evidence implicates gamma oscillatory activity in M1 as central to the execution of a movement, far less is known about top-down attentional modulation of this response. Herein, we utilized magnetoencephalography (MEG) during a Posner attention-reorienting task to investigate top-down modulation of M1 gamma responses by frontal attention networks in 63 healthy adult participants. MEG data were evaluated in the time-frequency domain and significant oscillatory responses were imaged using a beamformer. Robust increases in theta activity were found in bilateral inferior frontal gyri (IFG), with significantly stronger responses evident in trials that required attentional reorienting relative to those that did not. Additionally, strong gamma oscillations (60-80 Hz) were detected in M1 during movement execution, with similar responses elicited irrespective of attentional reorienting. Whole-brain voxel-wise correlations between validity difference scores (i.e., attention reorienting trials-nonreorienting trials) in frontal theta activity and movement-locked gamma oscillations revealed a robust relationship in the contralateral sensorimotor cortex, supplementary motor area, and right cerebellum, suggesting modulation of these sensorimotor network gamma responses by attentional reorienting. Importantly, the validity difference effect in this distributed motor network was predictive of overall motor function measured outside the scanner and further, based on a mediation analysis this relationship was fully mediated by the reallocation response in the right IFG. These data are the first to characterize the top-down modulation of movement-related gamma responses during attentional reorienting and movement execution.

摘要

执行运动计划的能力涉及到初级运动(M1)区域中时空精确的振荡活动,与朝向当前任务目标的“更高阶”注意力机制的募集协同作用。虽然当前的证据表明 M1 中的伽马振荡活动是执行运动的核心,但对于这种反应的自上而下的注意力调制知之甚少。在此,我们利用 63 名健康成年参与者在进行 Posner 注意重定向任务期间的脑磁图(MEG),研究前额叶注意网络对 M1 伽马反应的自上而下调制。MEG 数据在时频域中进行评估,并使用波束形成器对显著的振荡反应进行成像。在双侧额下回(IFG)中发现了强烈的θ活动增加,与不需要注意力重定向的试验相比,需要注意力重定向的试验中反应更为明显。此外,在运动执行过程中 M1 中检测到强烈的伽马振荡(60-80 Hz),无论注意力是否重定向,都会引发类似的反应。在额叶θ活动和运动锁定γ振荡之间的有效性差异得分(即注意力重定向试验-非重定向试验)的全脑体素-wise 相关性揭示了对侧感觉运动皮层、补充运动区和右侧小脑中的强相关性,表明注意力重定向对这些感觉运动网络γ反应的调制。重要的是,这个分布式运动网络中的有效性差异效应可以预测在扫描仪外测量的整体运动功能,并且更进一步,基于中介分析,这种关系完全由右侧 IFG 中的重新分配反应介导。这些数据是首次描述在注意力重定向和运动执行过程中运动相关γ反应的自上而下调制。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验