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首页> 外文期刊>Neuron >Vasoactive Intestinal Polypeptide-Expressing Interneurons in the Hippocampus Support Goal-Oriented Spatial Learning
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Vasoactive Intestinal Polypeptide-Expressing Interneurons in the Hippocampus Support Goal-Oriented Spatial Learning

机译:在海马的血管活性肠道多肽 - 在海马支持目标的空间学习中

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摘要

Diverse computations in the neocortex are aided by specialized GABAergic interneurons (INs), which selectively target other INs. However, much less is known about how these canonical disinhibitory circuit motifs contribute to network operations supporting spatial navigation and learning in the hippocampus. Using chronic two-photon calcium imaging in mice performing random foraging or goal-oriented learning tasks, we found that vasoactive intestinal polypeptide-expressing (VIP+), disinhibitory INs in hippocampal area CA1 form functional subpopulations defined by their modulation by behavioral states and task demands. Optogenetic manipulations of VIP+ INs and computational modeling further showed that VIP+ disinhibition is necessary for goal-directed learning and related reorganization of hippocampal pyramidal cell population dynamics. Our results demonstrate that disinhibitory circuits in the hippocampus play an active role in supporting spatial learning.
机译:Neocortex中的不同计算是由专门的Gabaeric Interneurons(INS)辅助,从而选择性地定位其他INS。 然而,关于这些规范失禁区电路图案如何促成支持在海马中的空间导航和学习的网络运营有助于如何贡献。 在执行随机觅食或面向目标的学习任务的小鼠中使用慢性双光子钙成像,我们发现血管活性肠道多肽 - 表达(VIP +),在海马区域CA1中的不禁止的IN1,通过行为状态和任务需求的调制来形成功能性亚步骤 。 VIP + INS和计算建模的光学操作进一步表明,VIP + DISIBHERION对于种族导向的学习和海马金字塔型细胞群体动力学的相关重组是必要的。 我们的结果表明,海马中的不安电路在支持空间学习方面发挥着积极的作用。

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