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由自发性全脑动态调控的海马体重演序列

Hippocampal replay sequence governed by spontaneous brain-wide dynamics.

作者信息

Yang Yifan, Leopold David A, Duyn Jeff H, Liu Xiao

机构信息

Department of Biomedical Engineering, The Pennsylvania State University, University Park, PA 16802, USA.

Neurophysiology Imaging Facility, National Institute of Mental Health, National Institute of Neurological Disorders and Stroke, and National Eye Institute, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

PNAS Nexus. 2024 Feb 16;3(4):pgae078. doi: 10.1093/pnasnexus/pgae078. eCollection 2024 Apr.

Abstract

Neurons in the hippocampus exhibit spontaneous spiking activity during rest that appears to recapitulate previously experienced events. While this replay activity is frequently linked to memory consolidation and learning, the underlying mechanisms are not well understood. Recent large-scale neural recordings in mice have demonstrated that resting-state spontaneous activity is expressed as quasi-periodic cascades of spiking activity that pervade the forebrain, with each cascade engaging a high proportion of recorded neurons. Hippocampal ripples are known to be coordinated with cortical dynamics; however, less is known about the occurrence of replay activity relative to other brain-wide spontaneous events. Here we analyzed responses across the mouse brain to multiple viewings of natural movies, as well as subsequent patterns of neural activity during rest. We found that hippocampal neurons showed time-selectivity, with individual neurons responding consistently during particular moments of the movie. During rest, the population of time-selective hippocampal neurons showed both forward and time-reversed replay activity that matched the sequence observed in the movie. Importantly, these replay events were strongly time-locked to brain-wide spiking cascades, with forward and time-reversed replay activity associated with distinct cascade types. Thus, intrinsic hippocampal replay activity is temporally structured according to large-scale spontaneous physiology affecting areas throughout the forebrain. These findings shed light on the coordination between hippocampal and cortical circuits thought to be critical for memory consolidation.

摘要

海马体中的神经元在静息状态下会表现出自发的尖峰活动,这种活动似乎重现了之前经历过的事件。虽然这种回放活动通常与记忆巩固和学习有关,但其潜在机制尚未得到很好的理解。最近在小鼠身上进行的大规模神经记录表明,静息状态下的自发活动表现为贯穿前脑的尖峰活动的准周期性级联,每个级联都涉及很大比例的被记录神经元。已知海马体涟漪与皮层动力学相互协调;然而,相对于其他全脑自发事件,对于回放活动的发生情况了解较少。在这里,我们分析了小鼠全脑对自然电影多次观看的反应,以及随后静息状态下的神经活动模式。我们发现海马体神经元表现出时间选择性,单个神经元在电影的特定时刻持续做出反应。在静息状态下,具有时间选择性的海马体神经元群体表现出向前和时间反转的回放活动,这些活动与电影中观察到的序列相匹配。重要的是,这些回放事件与全脑尖峰级联强烈地时间锁定,向前和时间反转的回放活动与不同的级联类型相关。因此,海马体固有的回放活动在时间上是根据影响整个前脑区域的大规模自发生理过程构建的。这些发现揭示了海马体和皮层回路之间的协调,这种协调被认为对记忆巩固至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1660/10983782/eb850a9d1cab/pgae078f1.jpg

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