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海马体-新皮质相互作用:关联性层次结构

Hippocampal-neocortical interaction: a hierarchy of associativity.

作者信息

Lavenex P, Amaral D G

机构信息

Department of Psychiatry, Center for Neuroscience and California Regional Primate Research Center, University of California at Davis, 95616, USA.

出版信息

Hippocampus. 2000;10(4):420-30. doi: 10.1002/1098-1063(2000)10:4<420::AID-HIPO8>3.0.CO;2-5.

Abstract

The structures forming the medial temporal lobe appear to be necessary for the establishment of long-term declarative memory. In particular, they may be involved in the "consolidation" of information in higher-order associational cortices, perhaps through feedback projections. This review highlights the fact that the medial temporal lobe is organized as a hierarchy of associational networks. Indeed, associational connections within the perirhinal, parahippocampal, and entorhinal cortices enables a significant amount of integration of unimodal and polymodal inputs, so that only highly integrated information reaches the remainder of the hippocampal formation. The feedback efferent projections from the perirhinal and parahippocampal cortices to the neocortex largely reciprocate the afferent projections from the neocortex to these areas. There are, however, noticeable differences in the degree of reciprocity of connections between the perirhinal and parahippocampal cortices and certain areas of the neocortex, in particular in the frontal and temporal lobes. These observations are particularly important for models of hippocampal-neocortical interaction and long-term storage of information in the neocortex. Furthermore, recent functional studies suggest that the perirhinal and parahippocampal cortices are more than interfaces for communication between the neocortex and the hippocampal formation. These structures participate actively in memory processes, but the precise role they play in the service of memory or other cognitive functions is currently unclear.

摘要

构成内侧颞叶的结构似乎是建立长期陈述性记忆所必需的。特别是,它们可能通过反馈投射参与高阶联合皮质中信息的“巩固”。本综述强调了内侧颞叶被组织成一个联合网络层次结构这一事实。事实上,嗅周皮质、海马旁皮质和内嗅皮质内的联合连接能够对单峰和多峰输入进行大量整合,从而只有高度整合的信息才能到达海马结构的其余部分。从嗅周皮质和海马旁皮质到新皮质的反馈传出投射在很大程度上与从新皮质到这些区域的传入投射相互对应。然而,嗅周皮质和海马旁皮质与新皮质某些区域(特别是额叶和颞叶)之间连接的相互对应程度存在明显差异。这些观察结果对于海马 - 新皮质相互作用模型以及新皮质中信息的长期存储尤为重要。此外,最近的功能研究表明,嗅周皮质和海马旁皮质不仅仅是新皮质与海马结构之间的通信接口。这些结构积极参与记忆过程,但它们在记忆或其他认知功能中所起的确切作用目前尚不清楚。

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