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在睡眠期间伴有脑桥-膝状体-枕叶波时外侧膝状体和膝状体周围丘脑神经元的相位激活。

Phasic activation of lateral geniculate and perigeniculate thalamic neurons during sleep with ponto-geniculo-occipital waves.

作者信息

Steriade M, Paré D, Bouhassira D, Deschênes M, Oakson G

机构信息

Laboratoire de Neurophysiologie, Faculté de Médecine, Université Laval, Québec, Canada.

出版信息

J Neurosci. 1989 Jul;9(7):2215-29. doi: 10.1523/JNEUROSCI.09-07-02215.1989.

DOI:10.1523/JNEUROSCI.09-07-02215.1989
PMID:2746326
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6569763/
Abstract

Ponto-geniculo-occipital (PGO) waves are spiky field potentials generated in cholinergic nuclei of the dorsolateral mesopontine tegmentum just prior to and during rapid-eye-movement (REM) sleep and transferred toward thalamic nuclei. These events are commonly regarded as physiological correlates of oneiric behavior. We have examined the PGO-related discharges of physiologically identified neurons located in the dorsal lateral geniculate (LG) nucleus and perigeniculate (PG) sector of the reticular thalamic complex in chronically implanted, naturally sleeping cats. PGO focal waves and associated unit discharges were simultaneously recorded by the same microelectrode. PGO waves herald the other signs of REM sleep (EEG desynchronization and muscular atonia), appearing 30-90 sec before REM sleep over the EEG-synchronized activity of slow-wave sleep (pre-REM epoch). (1) Most PG neurons discharged bursts of action potentials in relation to PGO waves during both pre-REM and REM sleep. (2) The PGO-related activity of LG neurons was quite different. During the pre-REM stage, PGO waves correlated with a short (7-15 msec), high-frequency (300-500 Hz) spike burst of LG neurons, followed by a long (0.2-0.4 sec) train of single spikes, whereas during REM sleep, the PGO-related activity lacked the initial burst and consisted of a spike train that only slightly exceeded the tonically increased background firing of LG cells. The stereotyped characteristics of the PGO-related spike bursts during the pre-REM epoch suggest that they are the extracellular reflection of a low-threshold spike deinactivated by the tonic membrane hyperpolarization of LG cells associated with the EEG-synchronized sleep state. Such bursts are inactivated during the tonic depolarization of LG cells that occurs in REM sleep. The synchronous spike bursts discharged by LG cells in relation with the PGO waves of the pre-REM epoch probably underlie the much larger amplitude of the PGO waves of the pre-REM epoch as compared with those of the REM-sleep state. Since LG neurons have relatively low spontaneous firing rates during the EEG-synchronized pre-REM epoch, the PGO-related activity of this transitional stage leads to a higher signal-to-noise ratio in the visual thalamocortical channel than during REM sleep. We suggest that the PGO-related activity during the pre-REM epoch is related to vivid imagery during this stage of sleep.

摘要

脑桥-膝状体-枕叶(PGO)波是在快速眼动(REM)睡眠前及睡眠期间,于脑桥背外侧被盖区的胆碱能核团中产生的尖峰场电位,并向丘脑核团传导。这些事件通常被视为梦呓行为的生理关联。我们研究了长期植入电极、处于自然睡眠状态的猫的背外侧膝状体(LG)核及丘脑网状复合体的膝周(PG)区中,经生理鉴定的神经元的PGO相关放电情况。PGO局灶波和相关的单位放电由同一微电极同时记录。PGO波预示着REM睡眠的其他体征(脑电图去同步化和肌肉弛缓),在REM睡眠前30 - 90秒,出现在慢波睡眠的脑电图同步活动之上(REM睡眠前阶段)。(1)大多数PG神经元在REM睡眠前和REM睡眠期间,都会相对于PGO波发放动作电位爆发。(2)LG神经元的PGO相关活动则大不相同。在REM睡眠前阶段,PGO波与LG神经元的一个短(7 - 15毫秒)、高频(300 - 500赫兹)的尖峰爆发相关,随后是一长串(0.2 - 0.4秒)的单个尖峰,而在REM睡眠期间,PGO相关活动没有初始爆发,仅由一串略高于LG细胞紧张性增加的背景放电的尖峰组成。REM睡眠前阶段PGO相关尖峰爆发的刻板特征表明,它们是LG细胞与脑电图同步睡眠状态相关的紧张性膜超极化使低阈值尖峰去失活的细胞外反映。这种爆发在REM睡眠中LG细胞的紧张性去极化期间失活。LG细胞在REM睡眠前阶段与PGO波相关发放的同步尖峰爆发,可能是REM睡眠前阶段PGO波幅度比REM睡眠状态下大得多的原因。由于LG神经元在脑电图同步的REM睡眠前阶段自发放电率相对较低,这个过渡阶段的PGO相关活动导致视觉丘脑皮质通道的信噪比高于REM睡眠期间。我们认为,REM睡眠前阶段的PGO相关活动与该睡眠阶段的生动意象有关。