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纹状体神经元在自由活动的小鼠中被动态招募到自我发起和学习行为的集体表征中。

Striatal Neurons Are Recruited Dynamically into Collective Representations of Self-Initiated and Learned Actions in Freely Moving Mice.

机构信息

Department of Medical Neurobiology, Institute of Medical Research Israel - Canada, The Faculty of Medicine, The Hebrew University of Jerusalem, 9112102, Jerusalem, Israel

Department of Medical Neurobiology, Institute of Medical Research Israel - Canada, The Faculty of Medicine, The Hebrew University of Jerusalem, 9112102, Jerusalem, Israel.

出版信息

eNeuro. 2024 Jan 11;11(1). doi: 10.1523/ENEURO.0315-23.2023. Print 2024 Jan.

Abstract

Striatal spiny projection neurons are hyperpolarized-at-rest (HaR) and driven to action potential threshold by a small number of powerful inputs-an input-output configuration that is detrimental to response reliability. Because the striatum is important for habitual behaviors and goal-directed learning, we conducted a microendoscopic imaging in freely moving mice that express a genetically encoded Ca indicator sparsely in striatal HaR neurons to evaluate their response reliability during self-initiated movements and operant conditioning. The sparse expression was critical for longitudinal studies of response reliability, and for studying correlations among HaR neurons while minimizing spurious correlations arising from contamination by the background signal. We found that HaR neurons are recruited dynamically into action representation, with distinct neuronal subsets being engaged in a moment-by-moment fashion. While individual neurons respond with little reliability, the population response remained stable across days. Moreover, we found evidence for the temporal coupling between neuronal subsets during conditioned (but not innate) behaviors.

摘要

纹状体棘投射神经元在静息时被过度极化(HaR),并被少量强大的输入驱动到动作电位阈值——这种输入-输出配置不利于响应的可靠性。由于纹状体对习惯行为和目标导向学习很重要,我们在自由活动的小鼠中进行了微内窥镜成像,这些小鼠在纹状体 HaR 神经元中稀疏表达一种遗传编码的 Ca 指示剂,以评估它们在自我发起的运动和操作性条件反射过程中的响应可靠性。稀疏表达对于响应可靠性的纵向研究以及研究 HaR 神经元之间的相关性至关重要,同时最大限度地减少了由背景信号污染引起的虚假相关性。我们发现 HaR 神经元被动态地募集到动作表示中,不同的神经元亚群以时刻的方式参与。虽然单个神经元的反应可靠性很小,但群体反应在几天内保持稳定。此外,我们发现了在条件反射(但不是先天)行为期间神经元亚群之间的时间耦合的证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b232/11057506/dd2e04bc7243/eneuro-11-ENEURO.0315-23.2023-g001.jpg

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