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Two spatiotemporally distinct value systems shape reward-based learning in the human brain

机译:两个时空不同的价值体系塑造了人脑中基于奖励的学习

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Avoiding repeated mistakes and learning to reinforce rewarding decisions is critical for human survival and adaptive actions. Yet, the neural underpinnings of the value systems that encode different decision-outcomes remain elusive. Here coupling single-trial electro-encephalography with simultaneously acquired functional magnetic resonance imaging, we uncover the spatiotemporal dynamics of two separate but interacting value systems encoding decision-outcomes. Consistent with a role in regulating alertness and switching behaviours, an early system is activated only by negative outcomes and engages arousal-related and motor-preparatory brain structures. Consistent with a role in reward-based learning, a later system differentially suppresses or activates regions of the human reward network in response to negative and positive outcomes, respectively. Following negative outcomes, the early system interacts and downregulates the late system, through a thalamic interaction with the ventral striatum. Critically, the strength of this coupling predicts participants' switching behaviour and avoidance learning, directly implicating the thalamostriatal pathway in reward-based learning.
机译:避免重复犯错误并学会加强奖励性决策对于人类生存和适应行动至关重要。然而,编码不同决策结果的价值体系的神经基础仍然难以捉摸。在这里,结合同时进行的功能磁共振成像的单次试验脑电图,我们发现了两个独立但相互作用的编码决策结果的价值系统的时空动力学。与调节机敏性和改变行为的作用一致,早期系统仅由负面结果激活,并参与唤醒相关和运动准备性大脑结构。与基于奖励的学习中的角色一致,后一种系统分别响应于负面和正面结果而有区别地压制或激活人类奖励网络的区域。阴性结果后,早期系统通过丘脑与腹侧纹状体相互作用而相互作用,并下调晚期系统。至关重要的是,这种耦合的强度预示了参与者的转换行为和回避学习,直接暗示了基于奖励学习的丘脑途径。

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