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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Prospective Coding of Dorsal Raphe Reward Signals by the Orbitofrontal Cortex
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Prospective Coding of Dorsal Raphe Reward Signals by the Orbitofrontal Cortex

机译:眶额叶皮质对背Ra奖赏信号的预期编码

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The orbitofrontal cortex (OFC) is important for the cognitive processes of learning and decision making. Previous recordings have revealed that OFC neurons encode predictions of reward outcomes. The OFC is interconnected with the dorsal raphe nucleus (DRN), which is a major serotonin (5-HT) center of the brain. Recent studies have provided increasing evidence that the DRN encodes reward signals. However, it remains unclear how the activity of DRN neurons affects the prospective reward coding of OFC neurons. By combining single-unit recordings from the OFC and optogenetic activation of the DRN in behaving mice, we found that DRN stimulation is sufficient to organize and modulate the anticipatory responses of OFC neurons. During pavlovian conditioning tasks for mice, odorant cues were associated with the delayed delivery of natural rewards of sucrose solution or DRN stimulation. After training, OFC neurons exhibited prospective responses to the sucrose solution. More importantly, the coupling of an odorant with delayed DRN stimulation resulted in tonic excitation or inhibition of OFC neurons during the delay period. The intensity of the prospective responses was affected by the frequency and duration of DRN stimulation. Additionally, DRN stimulation bidirectionally modulated the prospective responses to natural rewards. These experiments indicate that signals from the DRN are incorporated into the brain reward system to shape the cortical prospective coding of rewards.
机译:眶额皮质(OFC)对于学习和决策的认知过程很重要。先前的记录显示,OFC神经元编码奖励结果的预测。 OFC与背侧核(DRN)互连,背侧核是大脑的主要血清素(5-HT)中心。最近的研究提供了越来越多的证据表明DRN编码奖励信号。但是,目前尚不清楚DRN神经元的活动如何影响OFC神经元的预期奖励编码。通过组合来自OFC的单个记录和行为小鼠中DRN的光遗传学激活,我们发现DRN刺激足以组织和调节OFC神经元的预期反应。在对小鼠进行帕夫洛夫式调理任务期间,气味提示与蔗糖溶液或DRN刺激的自然回报延迟传递有关。训练后,OFC神经元对蔗糖溶液表现出前瞻性反应。更重要的是,加味剂与延迟DRN刺激的耦合会在延迟期间导致补品兴奋或OFC神经元的抑制。前瞻性反应的强度受DRN刺激的频率和持续时间的影响。另外,DRN刺激双向调制对自然奖励的预期响应。这些实验表明,来自DRN的信号被整合到大脑奖励系统中,以塑造奖励的皮质预期编码。

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