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Reward-Predictive Neural Activities in Striatal Striosome Compartments

机译:纹状体纹状体隔间的奖励性预测神经活动

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摘要

The striatum has been shown to play a critical role in reward prediction. It is composed of two neurochemically and anatomically distinct compartments known as the striosomes and the matrix. The striosomes comprise only about 15% of the striatum by volume and are distributed mosaically therein. Accordingly, it has been difficult to identify striosomal neurons in electrophysiological recordings and it has been unclear whether striosomal neurons, which project to midbrain dopaminergic neurons, engage in reward prediction. In this study, we utilized a mouse line (Sepw1-NP67) selectively expressing Cre in striosomal neurons, combined with endoscopic in vivo calcium imaging to selectively record activities of striosomal neurons during an odor-conditioning task. As mice learned the task, striosomal neurons in the dorsomedial striatum (DMS) showed predictive activities to odor cues that were associated with water rewards or aversive air puffs. These activities were proportional to the expected reward or air-puff intensity. Intriguingly, repeated recordings of the same striosomal neurons over a period of weeks revealed that predictive activities were learning-stage specific. That is, these activities disappeared after continuous training. Furthermore, presentations of rewards or air puffs activated some striosomal neurons. These findings suggest that the striosomes participate in reward prediction with learning stage-specific neural ensembles, and that they also send reward and aversive signals to dopaminergic neurons.
机译:纹状体已显示在奖励预测中起关键作用。它由两个神经化学和解剖上不同的区室组成,称为基质和基质。质体按体积计仅占纹状体的约15%,并且镶嵌在其中。因此,在电生理记录中鉴定出纹状体神经元是困难的,并且不清楚投射到中脑多巴胺能神经元的纹状体神经元是否参与奖励预测。在这项研究中,我们利用了在纹状体神经元中选择性表达Cre的小鼠系(Sepw1-NP67),结合内窥镜体内钙成像技术,选择性地记录了气味调节任务期间纹状体神经元的活动。当小鼠学会了这一任务时,背侧纹状体(DMS)中的纹状体神经元显示出对与水奖励或厌恶气喘有关的气味线索的预测活动。这些活动与预期的报酬或吹气强度成正比。有趣的是,在数周的时间内重复记录相同的纹状体神经元表明,预测活动是学习阶段特有的。即,这些活动在连续训练后消失了。此外,奖励或吹气的表现激活了一些纹状体神经元。这些发现表明,核小体通过学习阶段特定的神经团参与了奖励预测,并且它们还向多巴胺能神经元发送奖励和厌恶信号。

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