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通过背侧海马抑制探索记忆相关网络。

Exploring memory-related network via dorsal hippocampus suppression.

作者信息

Han Xu, Cramer Samuel R, Chan Dennis C Y, Zhang Nanyin

出版信息

bioRxiv. 2024 Jun 3:2024.06.03.597201. doi: 10.1101/2024.06.03.597201.

DOI:10.1101/2024.06.03.597201
PMID:38895299
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11185736/
Abstract

UNLABELLED

Memory is a complex brain process that requires coordinated activities in a large-scale brain network. However, the relationship between coordinated brain network activities and memory-related behavior is not well understood. In this study, we investigated this issue by suppressing the activity in the dorsal hippocampus (dHP) using chemogenetics and measuring the corresponding changes in brain-wide resting-state functional connectivity (RSFC) and memory behavior in awake rats. We identified an extended brain network contributing to the performance in a spatial-memory related task. Our results were cross-validated using two different chemogenetic actuators, clozapine (CLZ) and clozapine-N-oxide (CNO). This study provides a brain network interpretation of memory performance, indicating that memory is associated with coordinated brain-wide neural activities.

SIGNIFICANCE STATEMENT

Successful memory processes require coordinated activity in a large-scale brain network, extending beyond a few key, well-known brain regions like the hippocampus. However, the specific brain regions involved and how they orchestrate their activity that is pertinent to memory processing remain unclear. Our study, using a chemogenetics-rsfMRI- behavior approach in awake rats, elucidates a comprehensive framework of the extended memory-associated network. This knowledge offers a broader interpretation of memory processes, enhancing our understanding of the neural mechanisms behind memory function, particularly from a network perspective.

摘要

未标注

记忆是一个复杂的大脑过程,需要大规模脑网络中的协调活动。然而,脑网络协调活动与记忆相关行为之间的关系尚未得到充分理解。在本研究中,我们通过化学遗传学抑制背侧海马体(dHP)的活动,并测量清醒大鼠全脑静息态功能连接(RSFC)和记忆行为的相应变化,来研究这个问题。我们确定了一个扩展的脑网络,它对与空间记忆相关任务的表现有贡献。我们的结果使用两种不同的化学遗传学激活剂氯氮平(CLZ)和氯氮平 - N - 氧化物(CNO)进行了交叉验证。本研究提供了对记忆表现的脑网络解释,表明记忆与全脑协调的神经活动相关。

意义声明

成功的记忆过程需要大规模脑网络中的协调活动,这超出了海马体等少数几个关键的、知名的脑区。然而,涉及的具体脑区以及它们如何协调与记忆处理相关的活动仍不清楚。我们的研究在清醒大鼠中采用化学遗传学 - rsfMRI - 行为方法,阐明了扩展的记忆相关网络的综合框架。这一知识为记忆过程提供了更广泛的解释,增强了我们对记忆功能背后神经机制的理解,特别是从网络角度。

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