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Place Cells Grid Cells and Memory

机译:放置单元格网格单元格和内存

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摘要

The hippocampal system is critical for storage and retrieval of declarative memories, including memories for locations and events that take place at those locations. Spatial memories place high demands on capacity. Memories must be distinct to be recalled without interference and encoding must be fast. Recent studies have indicated that hippocampal networks allow for fast storage of large quantities of uncorrelated spatial information. The aim of the this article is to review and discuss some of this work, taking as a starting point the discovery of multiple functionally specialized cell types of the hippocampal–entorhinal circuit, such as place, grid, and border cells. We will show that grid cells provide the hippocampus with a metric, as well as a putative mechanism for decorrelation of representations, that the formation of environment-specific place maps depends on mechanisms for long-term plasticity in the hippocampus, and that long-term spatiotemporal memory storage may depend on offline consolidation processes related to sharp-wave ripple activity in the hippocampus. The multitude of representations generated through interactions between a variety of functionally specialized cell types in the entorhinal–hippocampal circuit may be at the heart of the mechanism for declarative memory formation.
机译:海马系统对于声明性记忆的存储和检索至关重要,包括位置记忆和在这些位置发生的事件。空间存储器对容量有很高的要求。存储器必须是唯一的,以便在没有干扰的情况下被调用,并且编码必须快速。最近的研究表明,海马网络可以快速存储大量不相关的空间信息。本文的目的是回顾和讨论其中的一些工作,以此为出发点,探索海马-肠胃道的多种功能特定的细胞类型,例如位置,网格和边界细胞。我们将显示网格单元为海马提供了度量标准,以及为表示的去相关提供了一种可能的机制,特定于环境的位置图的形成取决于海马的长期可塑性机制,以及长期的时空记忆存储可能取决于与海马中的尖波波纹活动有关的离线整合过程。通过内嗅-海马回路中各种功能专门化的细胞类型之间的相互作用而产生的大量表征可能是声明性记忆形成机制的核心。

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