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CA3 海马亚区在空间记忆中的作用:一种面向过程的行为评估。

The role of the CA3 hippocampal subregion in spatial memory: a process oriented behavioral assessment.

机构信息

Department of Psychology, San Diego State University, San Diego CA 92182, United States.

出版信息

Prog Neuropsychopharmacol Biol Psychiatry. 2009 Aug 1;33(5):774-81. doi: 10.1016/j.pnpbp.2009.03.037. Epub 2009 Apr 16.

Abstract

Computational models, behavioral data, and electrophysiological data suggest that the CA3 subregion of the hippocampus may support multiple mnemonic processes critical to the formation and subsequent retrieval of spatial memories. Multiple researchers have proposed that the CA3 subregion contains an autoassociative network in which synaptic connections between CA3 neurons that represent different components of a memory are strengthened via recurrent collateral connections. As a result, it has been suggested that the CA3 autoassociative network may support multiple processes including the formation of spatial arbitrary associations, temporary maintenance of spatial working memory, and spatial pattern completion. In addition, the CA3 subregion has been suggested to be involved in spatial pattern separation. The separation of patterns is hypothesized to be accomplished based on the low probability that any two CA3 neurons will receive mossy-fiber input synapses from a similar subset of dentate gyrus cells. The separation of patterns also may be enhanced by competitive inhibition within CA3 and dentate gyrus. This review will focus on the mnemonic processes supported by CA3 neurons and how these processes may facilitate the encoding and retrieval of spatial information. Although there is growing evidence indicating that the hippocampus plays a role in the processing of nonspatial information as well, the scope of the present review will focus on the role of the CA3 subregion in spatial memory.

摘要

计算模型、行为数据和电生理数据表明,海马体的 CA3 亚区可能支持多个对空间记忆的形成和随后的检索至关重要的记忆过程。多位研究人员提出,CA3 亚区包含一个自联想网络,其中代表记忆不同成分的 CA3 神经元之间的突触连接通过递归侧支连接得到增强。因此,有人认为 CA3 自联想网络可能支持多个过程,包括空间任意联想的形成、空间工作记忆的临时维持以及空间模式完成。此外,CA3 亚区被认为参与了空间模式分离。据推测,模式分离是基于这样一种低概率,即任何两个 CA3 神经元从类似的齿状回细胞亚集中接收苔藓纤维输入突触。模式的分离也可以通过 CA3 和齿状回内的竞争抑制来增强。这篇综述将重点介绍 CA3 神经元支持的记忆过程,以及这些过程如何促进空间信息的编码和检索。尽管越来越多的证据表明海马体在非空间信息的处理中也发挥作用,但本综述的范围将集中在 CA3 亚区在空间记忆中的作用。

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