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首页> 外文期刊>Neuron >Neural mechanisms of transient and sustained cognitive control during task switching.
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Neural mechanisms of transient and sustained cognitive control during task switching.

机译:任务切换过程中短暂和持续认知控制的神经机制。

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摘要

A hybrid blocked and event-related functional magnetic resonance imaging (fMRI) study decomposed brain activity during task switching into sustained and transient components. Contrasting task-switching blocks against single-task blocks revealed sustained activation in right anterior prefrontal cortex (PFC). Contrasting task-switch trials against task-repeat and single-task trials revealed activation in left lateral PFC and left superior parietal cortex. In both sets of regions, activation dynamics were strongly modulated by trial-by-trial fluctuations in response speed. In addition, right anterior PFC activity selectively covaried with the magnitude of mixing cost (i.e., task-repeat versus single-task trial performance), and left superior parietal activity selectively covaried with the magnitude of the switching cost (i.e., task-switch versus task-repeat trial performance). These results indicate a functional double dissociation in brain regions supporting different components of cognitive control during task switching and suggest that both sustained and transient control processes mediate the behavioral performance costs of task switching.
机译:一项混合的受阻事件相关事件的功能磁共振成像(fMRI)研究将任务切换为持续性和短暂性成分时分解了大脑活动。对比单个任务块的任务切换块,发现右前额叶前皮质(PFC)持续激活。对比任务重复试验和任务重复试验和单任务试验,发现左外侧PFC和左上顶叶皮层激活。在这两组区域中,响应速度的逐次波动强烈地激活了激活动力学。此外,右前PFC活动选择性地与混合成本的大小相关(即,任务重复与单项试验的性能),而左上顶活动选择性地与转换成本的大小相关(即,任务转换对重复执行任务的性能)。这些结果表明在大脑区域中的功能性双解离支持任务切换过程中认知控制的不同组成部分,并表明持续和短暂的控制过程都介导了任务切换的行为绩效成本。

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