海马、边缘皮层和杏仁核的快速网络振荡和行为对快速眼动和非快速眼动神经元的放电活动有不同的调节。

IF 2.7 3区 医学 Q3 NEUROSCIENCES
eNeuro Pub Date : 2025-05-28 Print Date: 2025-05-01 DOI:10.1523/ENEURO.0575-24.2025
Risa Kajiya, Hiroyuki Miyawaki, Hirokazu Nakahara, Kenji Mizuseki
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引用次数: 0

摘要

睡眠由两种交替状态组成——快速眼动睡眠(REM)和非快速眼动睡眠(NREM)。神经元根据大脑状态调整它们的放电活动,但是这种调节如何在神经元和大脑区域之间变化仍然知之甚少。本研究分析了先前获得的恐惧条件大鼠海马腹侧CA1区、前边缘皮层第5层和杏仁核基底外侧连续17小时的单单元活动和局部场电位记录。研究结果表明,超过一半的神经元在快速眼动睡眠期间比非快速眼动睡眠期间放电更快,尽管有一部分神经元表现出相反的偏好,在非快速眼动睡眠期间优先放电。在睡眠期间,倾向于快速眼动和非快速眼动的神经元的放电活动都减少了。然而,快速网络振荡,包括海马锐波波纹(SWRs)、杏仁核高频振荡、皮质波纹和皮质纺锤波,对REM和nrem偏好神经元有不同的调制。在清醒状态下,快速眼动神经元比快速眼动神经元放电更慢,但在swr和休克表现下激活更强烈。此外,在睡眠中的快速网络振荡中,具有相似REM/NREM偏好的神经元比具有不同偏好的神经元表现出更强的区域内和跨区域共激活。相反,在恐惧调节过程中,具有不同快速眼动/非快速眼动偏好的神经元比具有相似偏好的神经元表现出更强的区域间协同激活。这些发现表明,倾向于快速眼动和非快速眼动的神经元的不同活动模式,可能反映了记忆中的不同角色,对局部和全局网络的影响不同,从而平衡了经验依赖的网络修改和睡眠依赖的神经元兴奋性稳态调节。睡眠由快速眼动和非快速眼动两种状态组成,每一种状态都具有不同的神经调节音调、网络动态和记忆相关功能。然而,快速眼动和非快速眼动睡眠如何调节神经元放电仍不清楚。这项研究表明,神经元表现出不同的睡眠状态放电偏好,REM和nrem偏好神经元在睡眠期间类似地下调,但被快速网络振荡不同地调节。具有相似快速眼动/非快速眼动偏好的神经元在睡眠中表现出更强的区域内和区域间共激活,而具有不同偏好的神经元在情绪显著体验中表现出更强的区域间共激活。这些发现表明,倾向于快速眼动和非快速眼动的神经元在形成局部和全局网络中发挥着不同的作用,可能平衡经验依赖的网络修改与睡眠依赖的神经元兴奋性稳态调节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Firing Activities of REM- and NREM-Preferring Neurons Are Differently Modulated by Fast Network Oscillations and Behavior in the Hippocampus, Prelimbic Cortex, and Amygdala.

Sleep consists of two alternating states-rapid eye movement (REM) and non-REM (NREM) sleep. Neurons adjust their firing activity based on brain state, however, the extent to which this modulation varies across neurons and brain regions remains poorly understood. This study analyzed previously acquired 17-h continuous recordings of single-unit activity and local field potentials in the ventral hippocampal CA1 region, prelimbic cortex layer 5, and basolateral nucleus of the amygdala of fear-conditioned rats. The findings indicate that more than half of the neurons fired faster during REM sleep than during NREM sleep, although a notable subset of neurons exhibited the opposite preference, firing preferentially during NREM sleep. During sleep, the overall firing activity of both REM- and NREM-preferring neurons decreased. However, fast network oscillations, including hippocampal sharp-wave ripples (SWRs), amygdalar high-frequency oscillations, cortical ripples, and cortical spindles, differentially modulated REM- versus NREM-preferring neurons. During wakefulness, REM-preferring neurons fired more slowly but were more intensely activated by SWRs and shock presentations than NREM-preferring neurons. Moreover, during fast network oscillations in sleep, neurons with similar REM/NREM preferences exhibited stronger within- and cross-regional coactivation than those with differing preferences. Conversely, during awake SWRs in fear conditioning sessions, neurons with different REM/NREM preferences showed stronger interregional coactivation than those with similar preferences. These findings suggest that the distinct activity patterns of REM- and NREM-preferring neurons, potentially reflecting different roles in memory, affect local and global networks differently, thereby balancing experience-dependent network modifications with sleep-dependent homeostatic regulation of neuronal excitability.

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来源期刊
eNeuro
eNeuro Neuroscience-General Neuroscience
CiteScore
5.00
自引率
2.90%
发文量
486
审稿时长
16 weeks
期刊介绍: An open-access journal from the Society for Neuroscience, eNeuro publishes high-quality, broad-based, peer-reviewed research focused solely on the field of neuroscience. eNeuro embodies an emerging scientific vision that offers a new experience for authors and readers, all in support of the Society’s mission to advance understanding of the brain and nervous system.
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