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海马旁回对模式分离的贡献。

Extra-hippocampal contributions to pattern separation.

机构信息

Department of Psychology, University of Victoria, Victoria, Canada.

Department of Psychology, Columbia University, New York, United States.

出版信息

Elife. 2023 Mar 27;12:e82250. doi: 10.7554/eLife.82250.

Abstract

Pattern separation, or the process by which highly similar stimuli or experiences in memory are represented by non-overlapping neural ensembles, has typically been ascribed to processes supported by the hippocampus. Converging evidence from a wide range of studies, however, suggests that pattern separation is a multistage process supported by a network of brain regions. Based on this evidence, considered together with related findings from the interference resolution literature, we propose the 'cortico-hippocampal pattern separation' (CHiPS) framework, which asserts that brain regions involved in cognitive control play a significant role in pattern separation. Particularly, these regions may contribute to pattern separation by (1) resolving interference in sensory regions that project to the hippocampus, thus regulating its cortical input, or (2) directly modulating hippocampal processes in accordance with task demands. Considering recent interest in how hippocampal operations are modulated by goal states likely represented and regulated by extra-hippocampal regions, we argue that pattern separation is similarly supported by neocortical-hippocampal interactions.

摘要

模式分离,即记忆中高度相似的刺激或经历通过不重叠的神经集合来表示的过程,通常归因于海马体支持的过程。然而,来自广泛研究的大量证据表明,模式分离是一个由多个阶段组成的过程,由大脑区域网络支持。基于这些证据,再加上干扰解决文献中的相关发现,我们提出了“皮质-海马模式分离”(CHiPS)框架,该框架断言参与认知控制的大脑区域在模式分离中起着重要作用。特别是,这些区域可能通过以下两种方式有助于模式分离:(1)解决投射到海马体的感觉区域中的干扰,从而调节其皮质输入,或(2)根据任务需求直接调节海马体的过程。考虑到最近人们对海马体操作如何受到目标状态的调节感兴趣,这些目标状态可能由海马体以外的区域来表示和调节,我们认为模式分离也同样受到新皮质-海马体相互作用的支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db61/10042541/2f3dadb8dd58/elife-82250-fig1.jpg

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