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通路特异性干预揭示了腹侧海马投射在认知功能中的多种作用。

Pathway specific interventions reveal the multiple roles of ventral hippocampus projections in cognitive functions.

机构信息

University of Bordeaux, INRAE, Bordeaux INP, NutriNeuro, UMR 1286, F-33077 Bordeaux, France.

University of Bordeaux, CNRS, INCIA, UMR 5287, F-33000 Bordeaux, France.

出版信息

Rev Neurosci. 2023 May 18;34(7):825-838. doi: 10.1515/revneuro-2023-0009. Print 2023 Oct 26.

Abstract

Since the 1950s study of Scoville and Milner on the case H.M., the hippocampus has attracted neuroscientists' attention. The hippocampus has been traditionally divided into dorsal and ventral parts, each of which projects to different brain structures and mediates various functions. Despite a predominant interest in its dorsal part in animal models, especially regarding episodic-like and spatial cognition, recent data highlight the role of the ventral hippocampus (vHPC), as the main hippocampal output, in cognitive processes. Here, we review recent studies conducted in rodents that have used advanced functional techniques to specifically monitor and manipulate vHPC efferent pathways and delineate the roles of these specific projections in learning and memory processes. Results highlight that vHPC projections to basal amygdala are implicated in emotional memory, to nucleus accumbens in social memory and instrumental actions and to prefrontal cortex in all the above as well as in object-based memory. Some of these hippocampal projections also modulate feeding and anxiety-like behaviours providing further evidence that the "one pathway-one function" view is outdated and future directions are proposed to better understand the role of hippocampal pathways and shed further light on its connectivity and function.

摘要

自 20 世纪 50 年代斯考维尔和米尔纳对 H.M. 病例的研究以来,海马体一直吸引着神经科学家的注意。海马体传统上被分为背侧和腹侧两部分,每一部分都投射到不同的大脑结构,并介导各种功能。尽管在动物模型中,人们对其背侧部分(特别是在类似情景和空间认知方面)的兴趣占主导地位,但最近的数据强调了腹侧海马体(vHPC)作为主要海马体输出的作用,在认知过程中发挥作用。在这里,我们回顾了最近在啮齿动物中进行的研究,这些研究使用了先进的功能技术来专门监测和操纵 vHPC 传出通路,并阐明了这些特定投射在学习和记忆过程中的作用。结果表明,vHPC 投射到基底杏仁核与情绪记忆有关,投射到伏隔核与社会记忆和工具性动作有关,投射到前额叶皮层与上述所有记忆以及基于物体的记忆有关。这些海马体投射中的一些还调节摄食和焦虑样行为,进一步证明了“一条通路一种功能”的观点已经过时,并提出了未来的方向,以更好地理解海马体通路的作用,并进一步揭示其连接和功能。

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