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用于直觉和审慎决策的常见和独特功能性脑网络。

Common and Distinct Functional Brain Networks for Intuitive and Deliberate Decision Making.

作者信息

Erdeniz Burak, Done John

机构信息

Department of Psychology, İzmir University of Economics, 35330 Izmir, Turkey.

Department of Psychology and Sports Sciences, School of Life and Medical Sciences, University of Hertfordshire, Hatfield AL 10 9AB, UK.

出版信息

Brain Sci. 2019 Jul 20;9(7):174. doi: 10.3390/brainsci9070174.

Abstract

Reinforcement learning studies in rodents and primates demonstrate that goal-directed and habitual choice behaviors are mediated through different fronto-striatal systems, but the evidence is less clear in humans. In this study, functional magnetic resonance imaging (fMRI) data were collected whilst participants ( = 20) performed a conditional associative learning task in which blocks of novel conditional stimuli (CS) required a deliberate choice, and blocks of familiar CS required an intuitive choice. Using standard subtraction analysis for fMRI event-related designs, activation shifted from the dorso-fronto-parietal network, which involves dorsolateral prefrontal cortex (DLPFC) for deliberate choice of novel CS, to ventro-medial frontal (VMPFC) and anterior cingulate cortex for intuitive choice of familiar CS. Supporting this finding, psycho-physiological interaction (PPI) analysis, using the peak active areas within the PFC for novel and familiar CS as seed regions, showed functional coupling between caudate and DLPFC when processing novel CS and VMPFC when processing familiar CS. These findings demonstrate separable systems for deliberate and intuitive processing, which is in keeping with rodent and primate reinforcement learning studies, although in humans they operate in a dynamic, possibly synergistic, manner particularly at the level of the striatum.

摘要

对啮齿动物和灵长类动物的强化学习研究表明,目标导向和习惯性选择行为是通过不同的额纹状体系统介导的,但在人类中的证据尚不太明确。在本研究中,收集了20名参与者在执行条件性联想学习任务时的功能磁共振成像(fMRI)数据,其中新的条件刺激(CS)块需要进行刻意选择,而熟悉的CS块则需要进行直观选择。使用fMRI事件相关设计的标准减法分析,激活从涉及背外侧前额叶皮层(DLPFC)以对新的CS进行刻意选择的背侧额顶网络,转移到用于对熟悉的CS进行直观选择的腹内侧额叶(VMPFC)和前扣带回皮层。支持这一发现的是,心理生理交互作用(PPI)分析以PFC中针对新的和熟悉的CS的峰值激活区域作为种子区域,结果显示在处理新的CS时尾状核与DLPFC之间存在功能耦合,而在处理熟悉的CS时尾状核与VMPFC之间存在功能耦合。这些发现证明了用于刻意处理和直观处理的可分离系统,这与啮齿动物和灵长类动物的强化学习研究一致,尽管在人类中它们以动态的、可能是协同的方式运作,特别是在纹状体水平。

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