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成人神经发生、情境编码和模式分离:治疗泛化的一种途径。

Adult Neurogenesis, Context Encoding, and Pattern Separation: A Pathway for Treating Overgeneralization.

机构信息

Departments of Psychiatry and Neuroscience, Columbia University, New York, NY, USA.

Division of Systems Neuroscience, New York State Psychiatric Institute, New York, NY, USA.

出版信息

Adv Neurobiol. 2024;38:163-193. doi: 10.1007/978-3-031-62983-9_10.

Abstract

In mammals, the subgranular zone of the dentate gyrus is one of two brain regions (with the subventricular zone of the olfactory bulb) that continues to generate new neurons throughout adulthood, a phenomenon known as adult hippocampal neurogenesis (AHN) (Eriksson et al., Nat Med 4:1313-1317, 1998; García-Verdugo et al., J Neurobiol 36:234-248, 1998). The integration of these new neurons into the dentate gyrus (DG) has implications for memory encoding, with unique firing and wiring properties of immature neurons that affect how the hippocampal network encodes and stores attributes of memory. In this chapter, we will describe the process of AHN and properties of adult-born cells as they integrate into the hippocampal circuit and mature. Then, we will discuss some methodological considerations before we review evidence for the role of AHN in two major processes supporting memory that are performed by the DG. First, we will discuss encoding of contextual information for episodic memories and how this is facilitated by AHN. Second, will discuss pattern separation, a major role of the DG that reduces interference for the formation of new memories. Finally, we will review clinical and translational considerations, suggesting that stimulation of AHN may help decrease overgeneralization-a common endophenotype of mood, anxiety, trauma-related, and age-related disorders.

摘要

在哺乳动物中,齿状回的颗粒下区是两个能够在整个成年期持续产生新神经元的脑区之一(另一个是嗅球的室下区),这一现象被称为成年海马神经发生(AHN)(Eriksson 等人,Nat Med 4:1313-1317, 1998;García-Verdugo 等人,J Neurobiol 36:234-248, 1998)。这些新神经元整合到齿状回(DG)中对记忆编码具有重要意义,因为不成熟神经元具有独特的放电和布线特性,这会影响海马网络如何编码和存储记忆的属性。在本章中,我们将描述 AHN 的过程以及成年新生细胞整合到海马回路和成熟过程中的特性。然后,在讨论 AHN 在支持 DG 执行的两种主要记忆过程中的作用的证据之前,我们将讨论一些方法学上的考虑因素。首先,我们将讨论情景记忆的上下文信息编码,以及 AHN 如何促进这一过程。其次,我们将讨论模式分离,这是 DG 的主要作用之一,它可以减少新记忆形成的干扰。最后,我们将回顾临床和转化方面的考虑因素,表明刺激 AHN 可能有助于减少过度概括——这是情绪、焦虑、创伤相关和年龄相关障碍的常见表型。

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