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多种多巴胺系统:多巴胺的利弊

Multiple Dopamine Systems: Weal and Woe of Dopamine.

作者信息

Watabe-Uchida Mitsuko, Uchida Naoshige

机构信息

Center for Brain Science, Department of Molecular and Cellular Biology, Harvard University, Cambridge, Massachusetts 02138, USA.

出版信息

Cold Spring Harb Symp Quant Biol. 2018;83:83-95. doi: 10.1101/sqb.2018.83.037648. Epub 2019 Feb 20.

Abstract

The ability to predict future outcomes increases the fitness of the animal. Decades of research have shown that dopamine neurons broadcast reward prediction error (RPE) signals-the discrepancy between actual and predicted reward-to drive learning to predict future outcomes. Recent studies have begun to show, however, that dopamine neurons are more diverse than previously thought. In this review, we will summarize a series of our studies that have shown unique properties of dopamine neurons projecting to the posterior "tail" of the striatum (TS) in terms of anatomy, activity, and function. Specifically, TS-projecting dopamine neurons are activated by a subset of negative events including threats from a novel object, send prediction errors for external threats, and reinforce avoidance behaviors. These results indicate that there are at least two axes of dopamine-mediated reinforcement learning in the brain-one learning from canonical RPEs and another learning from threat prediction errors. We argue that the existence of multiple learning systems is an adaptive strategy that makes possible each system optimized for its own needs. The compartmental organization in the mammalian striatum resembles that of a dopamine-recipient area in insects (mushroom body), pointing to a principle of dopamine function conserved across phyla.

摘要

预测未来结果的能力会提高动物的适应性。数十年的研究表明,多巴胺神经元会传递奖励预测误差(RPE)信号——即实际奖励与预测奖励之间的差异——以驱动学习来预测未来结果。然而,最近的研究开始表明,多巴胺神经元比之前认为的更加多样化。在这篇综述中,我们将总结我们的一系列研究,这些研究从解剖学、活动和功能方面揭示了投射到纹状体后部“尾状核”(TS)的多巴胺神经元的独特特性。具体而言,投射到TS的多巴胺神经元会被包括来自新物体的威胁在内的一部分负面事件激活,会为外部威胁发送预测误差,并强化回避行为。这些结果表明,大脑中至少存在两条由多巴胺介导的强化学习轴——一条从典型的RPE进行学习,另一条从威胁预测误差进行学习。我们认为,多个学习系统的存在是一种适应性策略,使得每个系统都能根据自身需求进行优化。哺乳动物纹状体中的分区组织类似于昆虫中多巴胺接收区域(蘑菇体)的分区组织,这表明多巴胺功能的一个原则在不同门类中是保守的。

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