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人类前丘脑的 REM 睡眠微状态。

REM Sleep Microstates in the Human Anterior Thalamus.

机构信息

Institute of Psychology, ELTE, Eötvös Loránd University, Budapest 1064, Hungary

Institute of Behavioural Sciences, Semmelweis University, Budapest 1089, Hungary.

出版信息

J Neurosci. 2021 Jun 30;41(26):5677-5686. doi: 10.1523/JNEUROSCI.1899-20.2021. Epub 2021 Apr 16.

Abstract

Rapid eye movement (REM) sleep is an elusive neural state that is associated with a variety of functions from physiological regulatory mechanisms to complex cognitive processing. REM periods consist of the alternation of phasic and tonic REM microstates that differ in spontaneous and evoked neural activity. Although previous studies indicate, that cortical and thalamocortical activity differs across phasic and tonic microstates, the characterization of neural activity, particularly in subcortical structures that are critical in the initiation and maintenance of REM sleep is still limited in humans. Here, we examined electric activity patterns of the anterior nuclei of the thalamus as well as their functional connectivity with scalp EEG recordings during REM microstates and wakefulness in a group of epilepsy patients ( = 12, 7 females). Anterothalamic local field potentials (LFPs) showed increased high-α and β frequency power in tonic compared with phasic REM, emerging as an intermediate state between phasic REM and wakefulness. Moreover, we observed increased thalamocortical synchronization in phasic compared with tonic REM sleep, especially in the slow and fast frequency ranges. Wake-like activity in tonic REM sleep may index the regulation of arousal and vigilance facilitating environmental alertness. On the other hand, increased thalamocortical synchronization may reflect the intrinsic activity of frontolimbic networks supporting emotional and memory processes during phasic REM sleep. In sum, our findings highlight that the heterogeneity of phasic and tonic REM sleep is not limited to cortical activity, but is also manifested by anterothalamic LFPs and thalamocortical synchronization. REM sleep is a heterogeneous sleep state that features the alternation of two microstates, phasic and tonic rapid eye movement (REM). These states differ in sensory processing, awakening thresholds, and cortical activity. Nevertheless, the characterization of these microstates, particularly in subcortical structures is still limited in humans. We had the unique opportunity to examine electric activity patterns of the anterior nuclei of the thalamus (ANTs) as well as their functional connectivity with scalp EEG recordings during REM microstates and wakefulness. Our findings show that the heterogeneity of phasic and tonic REM sleep is not limited to cortical activity, but is also manifested in the level of the thalamus and thalamocortical networks.

摘要

快速眼动(REM)睡眠是一种难以捉摸的神经状态,与从生理调节机制到复杂认知处理等各种功能有关。REM 期由相移和紧张 REM 微状态的交替组成,这两种微状态在自发和诱发的神经活动方面有所不同。尽管先前的研究表明,皮质和丘脑皮质活动在相移和紧张微状态之间有所不同,但在人类中,对神经活动的特征描述,特别是在对 REM 睡眠的启动和维持至关重要的皮质下结构中,仍然有限。在这里,我们在一组癫痫患者(= 12,7 名女性)中检查了丘脑前核的电活动模式及其在 REM 微状态和清醒期间与头皮 EEG 记录的功能连接。与相移 REM 相比,紧张 REM 中的前丘脑局部场电位(LFPs)显示出更高的高-α和β频带功率,表现为相移 REM 和清醒之间的中间状态。此外,我们观察到相移 REM 睡眠中的丘脑皮质同步性增加,与紧张 REM 睡眠相比,尤其是在慢波和快波频率范围内。紧张 REM 睡眠中的类似清醒的活动可能表明对觉醒和警觉的调节,促进环境警觉性。另一方面,增加的丘脑皮质同步性可能反映了支持相移 REM 睡眠期间情感和记忆过程的额 - 边缘网络的内在活动。总之,我们的研究结果表明,相移和紧张 REM 睡眠的异质性不仅限于皮质活动,还表现在前丘脑 LFPs 和丘脑皮质同步性上。快速眼动(REM)睡眠是一种异质性的睡眠状态,其特征是两种微状态,即相移和紧张 REM 的交替。这些状态在感觉处理、唤醒阈值和皮质活动方面有所不同。然而,这些微状态的特征描述,特别是在皮质下结构中,在人类中仍然有限。我们有机会检查丘脑前核(ANTs)的电活动模式,以及它们在 REM 微状态和清醒期间与头皮 EEG 记录的功能连接。我们的研究结果表明,相移和紧张 REM 睡眠的异质性不仅限于皮质活动,还表现在丘脑和丘脑皮质网络的水平上。

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