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空间、时间和情景记忆:海马体遍布认知地图。

Space, time, and episodic memory: The hippocampus is all over the cognitive map.

机构信息

Center for Neuroscience, University of California, Davis, 1544 Newton Court, Davis, California.

Department of Psychology, University of California, Davis, Davis, California.

出版信息

Hippocampus. 2018 Sep;28(9):680-687. doi: 10.1002/hipo.22750. Epub 2017 Jun 30.

Abstract

In recent years, the field has reached an impasse between models suggesting that the hippocampus is fundamentally involved in spatial processing and models suggesting that the hippocampus automatically encodes all dimensions of experience in the service of memory. Here, we consider key conceptual issues that have impeded progress in our understanding of hippocampal function, and we review findings that establish the scope and limits of hippocampal involvement in navigation and memory. We argue that space and time serve as a primary scaffold to break up experiences into specific contexts, and to organize multimodal input that is to be associated within a context. However, the hippocampus is clearly capable of incorporating additional dimensions into the scaffold if they are determined to be relevant in the event-defined context. Conceiving of the hippocampal representation as constrained by immediate task demands-yet preferring axes that involve space and time-helps to reconcile an otherwise disparate set of findings on the core function of the hippocampus.

摘要

近年来,在提示海马体从根本上参与空间处理的模型和提示海马体自动编码经验所有维度以服务于记忆的模型之间,该领域陷入了僵局。在这里,我们考虑了阻碍我们理解海马体功能的关键概念问题,并回顾了确定海马体在导航和记忆中的参与范围和限制的发现。我们认为,空间和时间是将经验分解为特定情境并组织要在情境中关联的多模态输入的主要支架。然而,如果在事件定义的情境中确定其他维度相关,那么海马体显然能够将这些维度纳入支架中。将海马体的表示形式设想为受当前任务需求的限制,同时又倾向于涉及空间和时间的轴,有助于调和在海马体核心功能方面原本截然不同的一系列发现。

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