Feng Yang-Yang, Bromberg-Martin Ethan S, Monosov Ilya E
Department of Neuroscience, Washington University School of Medicine, St. Louis, Missouri, USA.
Department of Biomedical Engineering, Washington University, St. Louis, Missouri, USA.
bioRxiv. 2023 Aug 21:2023.08.17.553745. doi: 10.1101/2023.08.17.553745.
The dorsal raphe nucleus (DRN) is implicated in psychiatric disorders that feature impaired sensitivity to reward amount, impulsivity when facing reward delays, and risk-seeking when grappling with reward uncertainty. However, whether and how DRN neurons signal reward amount, reward delay, and reward uncertainty during multi-attribute value-based decision-making, where subjects consider all these attributes to make a choice, is unclear. We recorded DRN neurons as monkeys chose between offers whose attributes, namely expected reward amount, reward delay, and reward uncertainty, varied independently. Many DRN neurons signaled offer attributes. Remarkably, these neurons commonly integrated offer attributes in a manner that reflected monkeys' overall preferences for amount, delay, and uncertainty. After decision-making, in response to post-decision feedback, these same neurons signaled signed reward prediction errors, suggesting a broader role in tracking value across task epochs and behavioral contexts. Our data illustrate how DRN participates in integrated value computations, guiding theories of DRN in decision-making and psychiatric disease.
中缝背核(DRN)与多种精神疾病有关,这些疾病的特征包括对奖励数量的敏感性受损、面对奖励延迟时的冲动性以及在应对奖励不确定性时的冒险行为。然而,在基于多属性价值的决策过程中,当受试者综合考虑所有这些属性来做出选择时,DRN神经元是否以及如何对奖励数量、奖励延迟和奖励不确定性进行信号编码尚不清楚。我们在猴子对属性(即预期奖励数量、奖励延迟和奖励不确定性)独立变化的选项进行选择时,记录了DRN神经元的活动。许多DRN神经元对选项属性进行了信号编码。值得注意的是,这些神经元通常以反映猴子对数量、延迟和不确定性的总体偏好的方式整合选项属性。在决策后,响应决策后的反馈,这些相同的神经元发出有正负之分的奖励预测误差信号,这表明它们在跨任务阶段和行为背景跟踪价值方面发挥着更广泛的作用。我们的数据说明了DRN如何参与综合价值计算,为DRN在决策和精神疾病方面的理论提供了指导。