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准备性定势转换过程中的脑时空动力学:脑磁图证据

Spatiotemporal brain dynamics during preparatory set shifting: MEG evidence.

作者信息

Periáñez José A, Maestú Fernando, Barceló Francisco, Fernández Alberto, Amo Carlos, Ortiz Alonso Tomás

机构信息

Department of Psychology, Cognitive Neuroscience Group (IUNICS), University of the Balearic Islands, Palma de Mallorca, Spain.

出版信息

Neuroimage. 2004 Feb;21(2):687-95. doi: 10.1016/j.neuroimage.2003.10.008.

Abstract

Humans can flexibly alter a plan of action to adjust their behavior adaptively in changing environments. Functional neuroimaging has shown distinct patterns of activation across a frontoparietal network responsible for switching and updating such plans of action or 'task sets.' However, little is known about the temporal order of activations within prefrontal or across with posterior regions subserving set-shifting operations. Here, whole-head magnetoencephalography (MEG) was used to explore the spatiotemporal brain dynamics in a modified version of the Wisconsin card-sorting test (WCST). Our task was designed to examine preparation of set-shifting rather than set-acquisition operations time locked to context-informative cues. Three cortical regions showed a larger number of MEG activity sources in response to shift and relative to nonshift cues: (a) inferior frontal gyrus (IFG; BA 45, 47/12), (b) anterior cingulate cortex (ACC; BA 24, 32), and (c) supramarginal gyrus (SMG; BA 40). Importantly, the timing of MEG activation differed across these regions. The earliest shift-related MEG activations were detected at the IFG (100-300 ms postcue onset), followed by two further peaks at the ACC (200-300 and 400-500 ms) and the SMG (300-400 and 500-600 ms). Several other prefrontal and posterior cortical areas were similarly activated by both shift and nonshift preparatory cues. The resulting temporal pattern of interactions within prefrontal and across with posterior association cortices is coherent with current models of task switching and provides novel information about the temporal course of brain activations responsible for the executive control of attention.

摘要

人类能够灵活改变行动计划,以便在不断变化的环境中适应性地调整自身行为。功能神经影像学研究表明,在负责切换和更新此类行动计划或“任务集”的额顶叶网络中,存在不同的激活模式。然而,对于前额叶内或与支持集合转换操作的后部区域之间激活的时间顺序,我们却知之甚少。在此,我们使用全脑磁脑图(MEG)来探索改良版威斯康星卡片分类测试(WCST)中的脑时空动态。我们的任务旨在检查集合转换的准备情况,而非与上下文信息线索时间锁定的集合获取操作。相对于非转换线索,有三个皮质区域在响应转换时表现出更多的MEG活动源:(a)额下回(IFG;BA 45、47/12),(b)前扣带回皮质(ACC;BA 24、32),以及(c)缘上回(SMG;BA 40)。重要的是,这些区域的MEG激活时间各不相同。最早检测到的与转换相关的MEG激活出现在IFG(提示开始后100 - 300毫秒),随后在ACC(200 - 300毫秒和400 - 500毫秒)和SMG(300 - 400毫秒和500 - 600毫秒)出现另外两个峰值。其他几个前额叶和后部皮质区域在转换和非转换准备线索下也有类似的激活。前额叶内以及与后部联合皮质之间相互作用所产生的时间模式与当前的任务切换模型一致,并为负责注意力执行控制的脑激活时间进程提供了新信息。

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