Bozic Ivan, Rusterholz Thomas, Mikutta Christian, Del Rio-Bermudez Carlos, Nissen Christoph, Adamantidis Antoine
Zentrum für Experimentelle Neurologie, Department of Neurology, Inselspital University Hospital Bern, Bern, Switzerland.
Department of Biomedical Research, University of Bern, Bern, Switzerland.
Eur J Neurosci. 2023 Jan;57(1):106-128. doi: 10.1111/ejn.15853. Epub 2022 Dec 7.
The interplay between the medial prefrontal cortex and hippocampus during non-rapid eye movement (NREM) sleep contributes to the consolidation of contextual memories. To assess the role of the thalamic nucleus reuniens (Nre) in this interaction, we investigated the coupling of neuro-oscillatory activities among prelimbic cortex, Nre, and hippocampus across sleep states and their role in the consolidation of contextual memories using multi-site electrophysiological recordings and optogenetic manipulations. We showed that ripples are time-locked to the Up state of cortical slow waves, the transition from UP to DOWN state in thalamic slow waves, the troughs of cortical spindles, and the peaks of thalamic spindles during spontaneous sleep, rebound sleep and sleep following a fear conditioning task. In addition, spiking activity in Nre increased before hippocampal ripples, and the phase-locking of hippocampal ripples and thalamic spindles during NREM sleep was stronger after acquisition of a fear memory. We showed that optogenetic inhibition of Nre neurons reduced phase-locking of ripples to cortical slow waves in the ventral hippocampus whilst their activation altered the preferred phase of ripples to slow waves in ventral and dorsal hippocampi. However, none of these optogenetic manipulations of Nre during sleep after acquisition of fear conditioning did alter sleep-dependent memory consolidation. Collectively, these results showed that Nre is central in modulating hippocampus and cortical rhythms during NREM sleep.
非快速眼动(NREM)睡眠期间内侧前额叶皮质与海马体之间的相互作用有助于情境记忆的巩固。为了评估丘脑 reunions 核(Nre)在这种相互作用中的作用,我们使用多部位电生理记录和光遗传学操作,研究了跨睡眠状态下前边缘皮质、Nre 和海马体之间神经振荡活动的耦合及其在情境记忆巩固中的作用。我们发现,在自发睡眠、反弹睡眠和恐惧条件任务后的睡眠期间,涟漪与皮质慢波的 Up 状态、丘脑慢波从 Up 到 DOWN 状态的转变、皮质纺锤波的波谷以及丘脑纺锤波的峰值在时间上是锁定的。此外,Nre 中的尖峰活动在海马体涟漪之前增加,并且在获得恐惧记忆后,NREM 睡眠期间海马体涟漪与丘脑纺锤波的锁相更强。我们发现,光遗传学抑制 Nre 神经元会降低腹侧海马体中涟漪与皮质慢波的锁相,而激活它们会改变腹侧和背侧海马体中涟漪相对于慢波的偏好相位。然而,在获得恐惧条件反射后的睡眠期间,对 Nre 进行的这些光遗传学操作均未改变睡眠依赖性记忆巩固。总的来说,这些结果表明 Nre 在调节 NREM 睡眠期间的海马体和皮质节律方面起着核心作用。