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CA3-CA2 系统内的选择性神经调节和相互抑制可以为重放优先排序序列。

Selective neuromodulation and mutual inhibition within the CA3-CA2 system can prioritize sequences for replay.

机构信息

Department of Computational Physiology, Simula Research Laboratory, Lysaker, Norway.

Centre for Integrative Neuroplasticity, University of Oslo, Oslo, Norway.

出版信息

Hippocampus. 2020 Nov;30(11):1228-1238. doi: 10.1002/hipo.23256. Epub 2020 Sep 1.

Abstract

To make optimal use of previous experiences, important neural activity sequences must be prioritized during hippocampal replay. Integrating insights about the interplay between CA3 and CA2, we propose a conceptual framework that allows the two regions to control which sequences are reactivated. We suggest that neuromodulatory-gated plasticity and mutual inhibition enable discrete assembly sequences in both regions to support each other while suppressing competing sequences. This perspective provides a coherent interpretation for a variety of seemingly disconnected functional properties of CA2 and paves the way for a more general understanding of CA2.

摘要

为了充分利用以前的经验,在海马体重放过程中必须优先考虑重要的神经活动序列。我们结合了关于 CA3 和 CA2 之间相互作用的见解,提出了一个概念框架,允许这两个区域控制哪些序列被重新激活。我们认为,神经调质门控可塑性和相互抑制使两个区域中的离散组装序列能够相互支持,同时抑制竞争序列。这种观点为 CA2 的各种看似不相关的功能特性提供了一个连贯的解释,并为更全面地理解 CA2 铺平了道路。

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