Department of Physiology, College of Basic Medical Sciences, Army Medical University, Chongqing, 400038, China.
State Key Laboratory of Trauma, Burns and Combined Injury, Daping Hospital/Research Institute of Surgery, Army Medical University, Chongqing, 400042, China.
Neurosci Bull. 2020 Aug;36(8):919-931. doi: 10.1007/s12264-020-00511-9. Epub 2020 May 19.
Cerebellar malfunction can lead to sleep disturbance such as excessive daytime sleepiness, suggesting that the cerebellum may be involved in regulating sleep and/or wakefulness. However, understanding the features of cerebellar regulation in sleep and wakefulness states requires a detailed characterization of neuronal activity within this area. By performing multiple-unit recordings in mice, we showed that Purkinje cells (PCs) in the cerebellar cortex exhibited increased firing activity prior to the transition from sleep to wakefulness. Notably, the increased PC activity resulted from the inputs of low-frequency non-PC units in the cerebellar cortex. Moreover, the increased PC activity was accompanied by decreased activity in neurons of the deep cerebellar nuclei at the non-rapid eye-movement sleep-wakefulness transition. Our results provide in vivo electrophysiological evidence that the cerebellum has the potential to actively regulate the sleep-wakefulness transition.
小脑功能障碍可导致睡眠障碍,如白天过度嗜睡,表明小脑可能参与调节睡眠和/或觉醒。然而,要了解小脑在睡眠和觉醒状态下的调节特征,需要详细描述该区域内神经元活动的特征。通过在小鼠中进行多单位记录,我们发现小脑皮层中的浦肯野细胞(PC)在从睡眠向觉醒过渡之前表现出更高的放电活动。值得注意的是,PC 活动的增加是由小脑皮层中低频非 PC 单元的输入引起的。此外,在非快速眼动睡眠-觉醒转换时,小脑深部核团的神经元活动减少。我们的结果提供了小脑具有主动调节睡眠-觉醒转换的体内电生理学证据。