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[社会决策与理论神经科学:人文科学与计算精神病学的前景]

[Social decision-making and theoretical neuroscience: prospects for human sciences and computational psychiatry].

作者信息

Nakahara Hiroyuki, Suzuki Shinsuke

机构信息

Laboratory for Integrated Theoretical Neuroscience, RIKEN Brain Research Institute.

出版信息

Brain Nerve. 2013 Aug;65(8):973-82.

Abstract

Learning to predict others' minds is critical for social cognition, but the underlying computation and neural mechanisms remains largely unknown. According to theories in social cognition, a simple conception is that humans simulate others' mental processes by directly recruiting one's own process to model others' minds. In this review, we first describe our recent finding and discuss its possible implications. Using human fMRI with model-based analysis on frameworks of reinforcement learning and value-based decision making, we found that simulation involves two hierarchical learning signals: a reward prediction error, generated by simulation of direct recruitment to model others' valuation, and an action prediction error, based on simulation and observation of the other's choices to track others' variability. These findings show that humans can learn to predict others' minds from simulation, using a scaffold of mentalizing signals. Then, we discuss prospects that theoretical neuroscience and computational approaches will play significant roles in understanding human behavior and neural mechanisms, leading to the so-called computational psychiatry as well as synthesis over different disciplines to study human.

摘要

学会预测他人的想法对于社会认知至关重要,但其潜在的计算过程和神经机制在很大程度上仍不为人知。根据社会认知理论,一个简单的概念是,人类通过直接调用自己的心理过程来模拟他人的心理过程,从而对他人的思维进行建模。在这篇综述中,我们首先描述我们最近的发现,并讨论其可能的影响。通过基于强化学习和基于价值决策框架的基于模型分析的人类功能磁共振成像,我们发现模拟涉及两个层次的学习信号:一个奖励预测误差,它是通过模拟直接调用对他人的估值进行建模而产生的;另一个行动预测误差,它基于对他人选择的模拟和观察,以追踪他人的变异性。这些发现表明,人类可以利用心理化信号的框架,通过模拟来学习预测他人的想法。然后,我们讨论理论神经科学和计算方法在理解人类行为和神经机制方面将发挥重要作用的前景,这将催生所谓的计算精神病学,并促进不同学科的综合研究。

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