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Reach Tracking Reveals Dissociable Processes Underlying Cognitive Control

机译:到达率跟踪揭示了认知控制基础上的可分离过程

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摘要

The current study uses reach tracking to investigate how cognitive control is implemented during online performance of the Stroop task (Experiment 1) and the Eriksen flanker task (Experiment 2). We demonstrate that two of the measures afforded by reach tracking, initiation time and reach curvature, capture distinct patterns of effects that have been linked to dissociable processes underlying cognitive control in electrophysiology and functional neuroimaging research. Our results suggest that initiation time reflects a response threshold adjustment process involving the inhibition of motor output, while reach curvature reflects the degree of co-activation between response alternatives registered by a monitoring process over the course of a trial. In addition to shedding new light on fundamental questions concerning how these processes contribute to the cognitive control of behavior, these results present a framework for future research to investigate how these processes function across different tasks, develop across the lifespan, and differ among individuals.
机译:当前的研究使用范围跟踪来调查在Stroop任务(实验1)和Eriksen flanker任务(实验2)的在线执行过程中如何实现认知控制。我们证明了到达跟踪,起始时间和到达曲率所提供的两种测量方法,可以捕获与电生理和功能性神经影像学研究中的认知控制基础的可分离过程相关的独特效应模式。我们的结果表明,启动时间反映了涉及对电机输出的抑制的响应阈值调整过程,而到达曲率则反映了在整个试验过程中,由监视过程记录的响应替代方案之间的共激活程度。这些结果除了为这些过程如何促进行为的认知控制提供了新的思路之外,还为今后的研究提供了一个框架,以研究这些过程如何在不同任务中发挥作用,在整个寿命中发展以及个体之间的差异。

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