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Differential recruitment of brain networks during visuospatial and color processing: Evidence from ERP microstates

机译:视觉空间和颜色处理过程中脑网络的差异募集:来自ERP微状态的证据

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摘要

Recent functional magnetic resonance imaging (fMRI) studies consistently revealed contributions of fronto-parietal and related networks to the execution of a visuospatial judgment task, the so-called "Clock Task". However, due to the low temporal resolution of fMRI, the exact cortical dynamics and timing of processing during task performance could not be resolved until now. In order to clarify the detailed cortical activity and temporal dynamics, 14 healthy subjects performed an established version of the "Clock Task", which comprises a visuospatial task (angle discrimination) and a control task (color discrimination) with the same stimulus material, in an electroencephalography (EEG) experiment. Based on the time-resolved analysis of network activations (microstate analysis), differences in timing between the angle compared to the color discrimination task were found after sensory processing in a time window starting around 200ms. Significant differences between the two tasks were observed in an analysis window from 192ms to 776ms. We divided this window in two parts: an early phase - from 192ms to ∼440ms, and a late phase - from ∼440ms to 776ms. For both tasks, the order of network activations and the types of networks were the same, but, in each phase, activations for the two conditions were dominated by differing network states with divergent temporal dynamics. Our results provide an important basis for the assessment of deviations in processing dynamics during visuospatial tasks in clinical populations.
机译:最近的功能磁共振成像(fMRI)研究一致地揭示了额顶和相关网络对执行视觉空间判断任务(即所谓的“时钟任务”)的贡献。然而,由于功能磁共振成像的低时间分辨率,任务执行过程中确切的皮质动力学和处理的时机直到现在仍无法解决。为了阐明详细的皮层活动和时间动态,14名健康受试者进行了“时钟任务”的既定版本,其中包括具有相同刺激材料的视觉空间任务(角度辨别)和控制任务(颜色辨别)。脑电图(EEG)实验。根据网络激活的时间分辨分析(微状态分析),经过约200ms的时间窗口中的感官处理后,发现了与颜色识别任务相比角度之间的时序差异。在从192ms到776ms的分析窗口中观察到了两个任务之间的显着差异。我们将该窗口分为两部分:早期阶段-从192ms到〜440ms,后期阶段-从440ms到776ms。对于这两个任务,网络激活的顺序和网络类型是相同的,但是在每个阶段,针对这两种情况的激活主要是由具有不同时间动态的不同网络状态决定的。我们的结果为评估临床人群视觉空间任务过程动态变化的偏差提供了重要依据。

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