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Topographical differences of frontal-midline theta activity reflect functional differences in cognitive control abilities

机译:额中线theta活动的地形差异反映了认知控制能力的功能差异

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摘要

Electrophysiological oscillations are assumed to be the core mechanism for large-scale network communication. The specific role of frontal-midline theta oscillations as cognitive control mechanism is under debate. According to the dual mechanisms of control framework, cognitive control processes can be divided into proactive and reactive control. The present study aimed at investigating the role of frontal-midline theta activity by assessing oscillations in two tasks varying in the type of cognitive control needed. More specifically, a delayed match to sample (DMTS) task requiring proactive control and a color Stroop task recruiting reactive control processes were conducted within the same group of participants. Moreover, both tasks contained conditions with low and high need for cognitive control. As expected larger frontal-midline theta activity was found in conditions with high need for cognitive control. However, theta activity was focally activated at frontal sites in the DMTS task whereas it had a broader topographical distribution in the Stroop task, indicating that both proactive and reactive control are reflected in frontal-midline theta activity but reactive control is additionally characterized by a broader theta activation. These findings support the conclusion that frontal-midline theta acts functionally different depending on task requirements.
机译:电生理振荡被认为是大规模网络通信的核心机制。额中线theta振荡作为认知控制机制的具体作用尚在争论中。根据控制框架的双重机制,认知控制过程可分为主动控制和反应控制。本研究旨在通过评估所需的认知控制类型不同的两项任务中的振荡来调查额中线theta活动的作用。更具体地说,在同一组参与者中进行了需要主动控制的延迟采样(DMTS)任务和招募反应性控制过程的色Stroop任务。此外,这两项任务都包含对认知控制的需求高低的条件。如预期的那样,在对认知控制的高度需要的条件下发现了较大的额中线theta活动。然而,theta活动在DMTS任务中被集中激活在额叶部位,而在Stroop任务中则具有更广泛的地形分布,这表明前中线theta活动中既反映了主动控制又反映了反应性控制,但是反应性控制的特征还在于更广泛θ激活。这些发现支持以下结论:额中线theta的功能根据任务要求而有所不同。

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