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Central Cholinergic Neurons Are Rapidly Recruited by Reinforcement Feedback

机译:通过强化反馈快速招募中枢胆碱能神经元

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Basal forebrain cholinergic neurons constitute a major neuromodulatory system implicated in normal cognition and neurodegenerative dementias. Cholinergic projections densely innervate neocortex, releasing acetylcholine to regulate arousal, attention, and learning. However, their precise behavioral function is poorly understood because identified cholinergic neurons have never been recorded during behavior. To determine which aspects of cognition their activity might support, we recorded cholinergic neurons using optogenetic identification in mice performing an auditory detection task requiring sustained attention. We found that a non-cholinergic basal forebrain population-but not cholinergic neurons-were correlated with trial-to-trial measures of attention. Surprisingly, cholinergic neurons responded to reward and punishment with unusual speed and precision (18 +/- 3 ms). Cholinergic responses were scaled by the unexpectedness of reinforcement and were highly similar across neurons and two nuclei innervating distinct cortical areas. These results reveal that the cholinergic system broadcasts a rapid and precisely timed reinforcement signal, supporting fast cortical activation and plasticity.
机译:基底前脑胆碱能神经元构成主要的神经调节系统,与正常认知和神经退行性痴呆有关。胆碱能投射物密集地支配着新皮层,释放乙酰胆碱以调节唤醒,注意力和学习。然而,人们对它们的确切行为功能了解甚少,因为从未在行为过程中记录过鉴定出的胆碱能神经元。为了确定其活动可能支持认知的哪些方面,我们在进行听觉检测任务并需要持续关注的小鼠中使用光遗传学鉴定记录了胆碱能神经元。我们发现,非胆碱能的基础前脑人群(而非胆碱能的神经元)与注意试验的试验相关。出人意料的是,胆碱能神经元以异常的速度和精确度(18 +/- 3毫秒)对奖赏和惩罚做出反应。胆碱能反应由增强的意外程度决定,并且在神经元和两个支配不同皮质区域的核之间高度相似。这些结果表明,胆碱能系统广播快速而精确定时的增强信号,支持快速的皮层激活和可塑性。

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