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理解少突胶质前体细胞中间神经元:特性、神经回路及其在记忆和导航中的意义。

Understanding OLM interneurons: Characterization, circuitry, and significance in memory and navigation.

作者信息

Fernández-Arroyo Beatriz, Jurado Sandra, Lerma Juan

机构信息

Instituto de Neurociencias CSIC-UMH, 03550 San Juan de Alicante, Spain.

Instituto de Neurociencias CSIC-UMH, 03550 San Juan de Alicante, Spain.

出版信息

Neuroscience. 2025 Jul 10;578:69-80. doi: 10.1016/j.neuroscience.2024.07.046. Epub 2024 Aug 7.

Abstract

Understanding the intricate mechanisms underlying memory formation and retention relies on unraveling how the hippocampus, a structure fundamental for memory acquisition, is organized. Within the complex hippocampal network, interneurons play a crucial role in orchestrating memory processes. Among these interneurons, Oriens-Lacunosum Moleculare (OLM) cells emerge as key regulators, governing the flow of information to CA1 pyramidal cells. In this review, we explore OLM interneurons in detail, describing their mechanisms and effects on memory processing, particularly in spatial and contextual memory tasks. Our aim is to provide a detailed understanding of how OLM interneurons contribute to the dynamic landscape of memory formation and retrieval.

摘要

理解记忆形成和保留背后的复杂机制,依赖于弄清楚海马体(记忆获取的基础结构)是如何组织的。在复杂的海马体网络中,中间神经元在协调记忆过程中起着关键作用。在这些中间神经元中,海马伞-分子层(OLM)细胞成为关键调节因子,控制着信息流向CA1锥体细胞。在这篇综述中,我们详细探讨了OLM中间神经元,描述了它们对记忆处理的机制和影响,特别是在空间和情境记忆任务中。我们的目的是详细了解OLM中间神经元如何促成记忆形成和检索的动态过程。

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