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首页> 外文期刊>Journal of Cognitive Neuroscience >Neural Mechanisms, Temporal Dynamics, and Individual Differences in Interference Control
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Neural Mechanisms, Temporal Dynamics, and Individual Differences in Interference Control

机译:神经机制,时间动力学和干扰控制中的个体差异

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Functional magnetic resonance imaging (fMRI) methods may help in understanding processes of response capture and response inhibition in conflict tasks, such as the Simon task. However, data-driven approaches thus far have not yielded consistent insights into these processes. Here, a theory-driven approach is introduced that capitalizes on individual differences in the processes of central interest. Based on the so-called activation-suppression model, specific behavioral parameters for each individual derived from reaction time (RT) distribution analysis were computed and entered into model-based fMRI analyses. These parameters correspond closely to the processes of inappropriate location-driven response activation (capture) and the subsequent inhibition of this activation as detailed by the model. Data from 24 participants revealed activation in the pre-supplementary motor area, which covaried with the RT distribution measure of response capture. Activation in the right inferior frontal cortex was found to covary with the RT distribution measure of response inhibition. These results, which are consistent against the backdrop of the larger literature on cognitive control, could have been derived neither from the standard data-driven fMRI approach, nor from inspecting overall mean RT alone.
机译:功能磁共振成像(fMRI)方法可能有助于理解冲突任务(例如Simon任务)中的响应捕获和响应抑制过程。但是,到目前为止,数据驱动的方法尚未对这些过程产生一致的见解。在这里,引入了一种理论驱动的方法,该方法利用了中心利益过程中的个体差异。基于所谓的激活抑制模型,计算了每个人从反应时间(RT)分布分析得出的特定行为参数,并将其输入基于模型的fMRI分析中。这些参数与不适当的位置驱动的响应激活(捕获)过程以及模型在此之后对该激活的后续抑制过程密切相关。来自24位参与者的数据显示,在补充运动前区域激活,这与响应捕获的RT分布度量相关。发现右下额叶皮层的激活与反应抑制的RT分布测量有关。这些结果与更大范围的认知控制文献一致,既不是从标准的数据驱动的功能磁共振成像方法得出的,也不是仅通过检查整体平均RT得出的。

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