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动态低频 EEG 相位同步模式在任务切换的主动控制中。

Dynamic low frequency EEG phase synchronization patterns during proactive control of task switching.

机构信息

Department of Experimental Psychology, Psychological Processes and Speech Therapy, Universidad Complutense of Madrid, Spain; Laboratory of Cognitive and Computational Neuroscience (UCM-UPM), Centre for Biomedical Technology (CTB), Madrid, Spain; Networking Research Center on Bioengineering, Biomaterials and Nanomedicine (CIBER-BBN), Madrid, Spain.

Laboratory of Cognitive and Computational Neuroscience (UCM-UPM), Centre for Biomedical Technology (CTB), Madrid, Spain; Laboratory of Neuropsychology, University of the Balearic Islands, Spain.

出版信息

Neuroimage. 2019 Feb 1;186:70-82. doi: 10.1016/j.neuroimage.2018.10.068. Epub 2018 Oct 28.

Abstract

Cognitive flexibility is critical for humans living in complex societies with ever-growing multitasking demands. Yet the low-frequency neural dynamics of distinct task-specific and domain-general mechanisms sub-serving mental flexibility are still ill-defined. Here we estimated phase electroencephalogram synchronization by using inter-trial phase coherence (ITPC) at the source space while twenty six young participants were intermittently cued to switch or repeat their perceptual categorization rule of Gabor gratings varying in color and thickness (switch task). Therefore, the aim of this study was to examine whether a proactive control is associated with connectivity only in the frontoparietal theta network, or also involves distinct neural connectivity within the delta band, as distinct neural signatures while preparing to switch or repeat a task set, respectively. To this end, we focused the analysis on late-latencies (from 500 to 800 msec post-cue onset), since they are known to be associated with top-down cognitive control processes. We confirmed that proactive control during a task switch was associated with frontoparietal theta connectivity. But importantly, we also found a distinct role of delta band oscillatory synchronization in proactive control, engaging more posterior frontotemporal regions as opposed to frontoparietal theta connectivity. Additionally, we built a regression model by using the ITPC results in delta and theta bands as predictors, and the behavioral accuracy in the switch task as the criterion, obtaining significant results for both frequency bands. All these findings support the existence of distinct proactive cognitive control processes related to functionally distinct though highly complementary theta and delta frontoparietal and temporoparietal oscillatory networks at late-latency temporal scales.

摘要

认知灵活性对于生活在复杂社会中的人类至关重要,因为社会中不断增长的多任务需求对认知灵活性提出了更高的要求。然而,支持心理灵活性的特定任务和一般领域的低频神经动力学机制仍然定义不明确。在这里,我们在源空间中使用试验间相位相干性(ITPC)来估计相位脑电图同步,同时 26 名年轻参与者间歇性地被提示切换或重复他们对 Gabor 光栅的感知分类规则,光栅的颜色和厚度在变化(切换任务)。因此,本研究旨在检验前顶叶theta 网络中的连接是否仅与主动控制有关,或者是否还涉及到不同的神经连接,因为在准备切换或重复任务集时,它们分别表现出不同的神经特征。为此,我们将分析重点放在后期潜伏期(从 cue 出现后 500 到 800 毫秒),因为已知后期潜伏期与自上而下的认知控制过程有关。我们证实,任务切换期间的主动控制与前顶叶 theta 连接有关。但重要的是,我们还发现了 delta 带振荡同步在主动控制中的独特作用,与前顶叶 theta 连接相比,它更多地涉及到后额额前区。此外,我们通过使用 delta 和 theta 频段的 ITPC 结果作为预测因子,以及切换任务中的行为准确性作为标准,构建了一个回归模型,两个频段都得到了显著的结果。所有这些发现都支持存在与功能上不同但高度互补的 theta 和 delta 额顶和颞顶振荡网络相关的不同的主动认知控制过程,这些网络在后期潜伏期时间尺度上存在。

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