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多巴胺编码实时奖励的可得性,以及不同时间尺度上奖励可得性状态之间的转变。

Dopamine encodes real-time reward availability and transitions between reward availability states on different timescales.

机构信息

New York State Psychiatric Institute, New York, NY, USA.

Department of Psychiatry, Columbia University, New York, NY, USA.

出版信息

Nat Commun. 2022 Jul 1;13(1):3805. doi: 10.1038/s41467-022-31377-2.

Abstract

Optimal behavior requires interpreting environmental cues that indicate when to perform actions. Dopamine is important for learning about reward-predicting events, but its role in adapting to inhibitory cues is unclear. Here we show that when mice can earn rewards in the absence but not presence of an auditory cue, dopamine level in the ventral striatum accurately reflects reward availability in real-time over a sustained period (80 s). In addition, unpredictable transitions between different states of reward availability are accompanied by rapid (~1-2 s) dopamine transients that deflect negatively at the onset and positively at the offset of the cue. This Dopamine encoding of reward availability and transitions between reward availability states is not dependent on reward or activity evoked dopamine release, appears before mice learn the task and is sensitive to motivational state. Our findings are consistent across different techniques including electrochemical recordings and fiber photometry with genetically encoded optical sensors for calcium and dopamine.

摘要

最优行为需要解释环境线索,以指示何时采取行动。多巴胺对于学习奖励预测事件很重要,但它在适应抑制性线索方面的作用尚不清楚。在这里,我们表明,当老鼠可以在没有听觉线索的情况下获得奖励,但不能在有听觉线索的情况下获得奖励时,腹侧纹状体中的多巴胺水平可以实时准确地反映在持续时间(80 秒)内的奖励可用性。此外,在不同奖励可用性状态之间不可预测的转换伴随着快速(约 1-2 秒)多巴胺瞬变,在提示开始时负向偏转,在提示结束时正向偏转。这种多巴胺对奖励可用性和奖励可用性状态之间转换的编码并不依赖于奖励或活动诱发的多巴胺释放,它出现在老鼠学习任务之前,并且对动机状态敏感。我们的发现与不同的技术一致,包括电化学记录和纤维光度法,以及用于钙和多巴胺的基因编码光学传感器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1df/9249893/4ccfa816da1c/41467_2022_31377_Fig1_HTML.jpg

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