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新皮层的投射介导记忆检索的自上而下控制。

Projections from neocortex mediate top-down control of memory retrieval.

作者信息

Rajasethupathy Priyamvada, Sankaran Sethuraman, Marshel James H, Kim Christina K, Ferenczi Emily, Lee Soo Yeun, Berndt Andre, Ramakrishnan Charu, Jaffe Anna, Lo Maisie, Liston Conor, Deisseroth Karl

机构信息

Department of Bioengineering, Stanford University, Stanford, California 94305, USA.

CNC Program, Stanford University, Stanford, California 94305, USA.

出版信息

Nature. 2015 Oct 29;526(7575):653-9. doi: 10.1038/nature15389. Epub 2015 Oct 5.

Abstract

Top-down prefrontal cortex inputs to the hippocampus have been hypothesized to be important in memory consolidation, retrieval, and the pathophysiology of major psychiatric diseases; however, no such direct projections have been identified and functionally described. Here we report the discovery of a monosynaptic prefrontal cortex (predominantly anterior cingulate) to hippocampus (CA3 to CA1 region) projection in mice, and find that optogenetic manipulation of this projection (here termed AC-CA) is capable of eliciting contextual memory retrieval. To explore the network mechanisms of this process, we developed and applied tools to observe cellular-resolution neural activity in the hippocampus while stimulating AC-CA projections during memory retrieval in mice behaving in virtual-reality environments. Using this approach, we found that learning drives the emergence of a sparse class of neurons in CA2/CA3 that are highly correlated with the local network and that lead synchronous population activity events; these neurons are then preferentially recruited by the AC-CA projection during memory retrieval. These findings reveal a sparsely implemented memory retrieval mechanism in the hippocampus that operates via direct top-down prefrontal input, with implications for the patterning and storage of salient memory representations.

摘要

前额叶皮质自上而下输入海马体被认为在记忆巩固、检索以及主要精神疾病的病理生理学中起着重要作用;然而,尚未确定并功能描述此类直接投射。在此,我们报告在小鼠中发现了从前额叶皮质(主要是前扣带回)到海马体(CA3至CA1区域)的单突触投射,并发现对该投射(此处称为AC-CA)进行光遗传学操纵能够引发情境记忆检索。为了探究这一过程的网络机制,我们开发并应用工具,在虚拟现实环境中行为的小鼠进行记忆检索期间刺激AC-CA投射时,观察海马体中细胞分辨率的神经活动。使用这种方法,我们发现学习驱动CA2/CA3中一类稀疏神经元的出现,这些神经元与局部网络高度相关并引发同步群体活动事件;然后在记忆检索期间,AC-CA投射优先招募这些神经元。这些发现揭示了海马体中一种通过直接自上而下的前额叶输入运作的稀疏实施的记忆检索机制,对显著记忆表征的模式化和存储具有启示意义。

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