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首页> 外文期刊>Neuron >Dopamine Prediction Errors in Reward Learning and Addiction: From Theory to Neural Circuitry
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Dopamine Prediction Errors in Reward Learning and Addiction: From Theory to Neural Circuitry

机译:奖励学习和成瘾中的多巴胺预测错误:从理论到神经回路

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摘要

Midbrain dopamine (DA) neurons are proposed to signal reward prediction error (RPE), a fundamental parameter in associative learning models. This RPE hypothesis provides a compelling theoretical framework for understanding DA function in reward learning and addiction. New studies support a causal role for DA-mediated RPE activity in promoting learning about natural reward; however, this question has not been explicitly tested in the context of drug addiction. In this review, we integrate theoretical models with experimental findings on the activity of DA systems, and on the causal role of specific neuronal projections and cell types, to provide a circuit-based framework for probing DA-RPE function in addiction. By examining error-encoding DA neurons in the neural network in which they are embedded, hypotheses regarding circuit-level adaptations that possibly contribute to pathological error signaling and addiction can be formulated and tested.
机译:提出了中脑多巴胺(DA)神经元信号奖励预测误差(RPE),这是联想学习模型中的基本参数。 RPE假设为理解DA在奖励学习和成瘾中的功能提供了令人信服的理论框架。新的研究支持DA介导的RPE活动在促进对自然报酬的学习中起因果作用;但是,这个问题尚未在吸毒成瘾的背景下得到明确检验。在这篇综述中,我们将理论模型与关于DA系统活性以及特定神经元投射和细胞类型的因果作用的实验发现相结合,以提供一个基于电路的框架来探究DA-RPE在成瘾中的功能。通过检查嵌入神经元的神经网络中的错误编码DA神经元,可以制定和测试有关电路级适应的假设,这些假设可能有助于病理性错误信号传递和成瘾。

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