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啮齿动物眶额皮质中的价值表示驱动学习,而不是选择。

Value representations in the rodent orbitofrontal cortex drive learning, not choice.

机构信息

Princeton Neuroscience Institute, Princeton University, Princeton, United States.

DeepMind, London, United Kingdom.

出版信息

Elife. 2022 Aug 17;11:e64575. doi: 10.7554/eLife.64575.

Abstract

Humans and animals make predictions about the rewards they expect to receive in different situations. In formal models of behavior, these predictions are known as value representations, and they play two very different roles. Firstly, they drive : the expected values of available options are compared to one another, and the best option is selected. Secondly, they support : expected values are compared to rewards actually received, and future expectations are updated accordingly. Whether these different functions are mediated by different neural representations remains an open question. Here, we employ a recently developed multi-step task for rats that computationally separates learning from choosing. We investigate the role of value representations in the rodent orbitofrontal cortex, a key structure for value-based cognition. Electrophysiological recordings and optogenetic perturbations indicate that these representations do not directly drive choice. Instead, they signal expected reward information to a learning process elsewhere in the brain that updates choice mechanisms.

摘要

人类和动物会对不同情境下预期的奖励做出预测。在行为的正式模型中,这些预测被称为价值表示,它们发挥着两种截然不同的作用。首先,它们驱动:将可用选项的预期值相互比较,并选择最佳选项。其次,它们支持:将预期值与实际收到的奖励进行比较,并相应地更新未来的预期。这些不同的功能是否由不同的神经表示介导,这仍然是一个悬而未决的问题。在这里,我们采用了一种最近开发的用于大鼠的多步骤任务,该任务在计算上可以将学习和选择分开。我们研究了价值表示在啮齿动物眶额皮质中的作用,眶额皮质是基于价值认知的关键结构。电生理记录和光遗传学扰动表明,这些表示并不直接驱动选择。相反,它们向大脑中其他地方的学习过程发出预期奖励信息,该过程会更新选择机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc32/9462853/a37c0726595b/elife-64575-fig1.jpg

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