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Optogenetically induced sleep spindle rhythms alter sleep architectures in mice

机译:光遗传诱导的睡眠纺锤节律改变小鼠的睡眠结构

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摘要

Sleep spindles are rhythmic patterns of neuronal activity generated within the thalamocortical circuit. Although spindles have been hypothesized to protect sleep by reducing the influence of external stimuli, it remains to be confirmed experimentally whether there is a direct relationship between sleep spindles and the stability of sleep. We have addressed this issue by using in vivo photostimulation of the thalamic reticular nucleus of mice to generate spindle oscillations that are structurally and functionally similar to spontaneous sleep spindles. Such optogenetic generation of sleep spindles increased the duration of non-rapid eye movement (NREM) sleep. Furthermore, the density of sleep spindles was correlated with the amount of NREM sleep. These findings establish a causal relationship between sleep spindles and the stability of NREM sleep, strongly supporting a role for the thalamocortical circuit in sleep regulation.
机译:睡眠纺锤体是丘脑皮质回路内产生的神经元活动的节律模式。尽管有人认为纺锤体可以通过减少外部刺激的影响来保护睡眠,但仍需通过实验证实,睡眠纺锤体与睡眠稳定性之间是否存在直接关系。我们已经通过使用小鼠的丘脑网状核的体内光刺激来产生纺锤体振荡,该纺锤体振荡在结构和功能上与自发性睡眠纺锤体相似,从而解决了这个问题。睡眠纺锤体的这种光遗传学产生增加了非快速眼动(NREM)睡眠的持续时间。此外,睡眠纺锤体的密度与NREM睡眠量相关。这些发现建立了睡眠纺锤体与NREM睡眠稳定性之间的因果关系,强烈支持了丘脑皮质回路在睡眠调节中的作用。

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