Brain Connectivity Laboratory, IRCCS San Raffaele Pisana, Rome, Italy.
Institute of Neurology, Dept. Geriatrics, Neuroscience & Orthopedics, Catholic University, A. Gemelli Foundation, Rome, Italy.
Hum Brain Mapp. 2017 Nov;38(11):5456-5464. doi: 10.1002/hbm.23736. Epub 2017 Jul 26.
Sleep onset is characterized by a specific and orchestrated pattern of frequency and topographical EEG changes. Conventional power analyses of electroencephalographic (EEG) and computational assessments of network dynamics have described an earlier synchronization of the centrofrontal areas rhythms and a spread of synchronizing signals from associative prefrontal to posterior areas. Here, we assess how "small world" characteristics of the brain networks, as reflected in the EEG rhythms, are modified in the wakefulness-sleep transition comparing the pre- and post-sleep onset epochs. The results show that sleep onset is characterized by a less ordered brain network (as reflected by the higher value of small world) in the sigma band for the frontal lobes indicating stronger connectivity, and a more ordered brain network in the low frequency delta and theta bands indicating disconnection on the remaining brain areas. Our results depict the timing and topography of the specific mechanisms for the maintenance of functional connectivity of frontal brain regions at the sleep onset, also providing a possible explanation for the prevalence of the frontal-to-posterior information flow directionality previously observed after sleep onset. Hum Brain Mapp 38:5456-5464, 2017. © 2017 Wiley Periodicals, Inc.
睡眠起始的特征是特定的和协调的脑电(EEG)频率和拓扑变化模式。传统的 EEG 功率分析和网络动力学的计算评估已经描述了中额前区节律的早期同步以及来自联合前额叶到后区的同步信号的传播。在这里,我们评估了脑网络的“小世界”特征(如 EEG 节律所反映的)如何在清醒-睡眠过渡期间发生变化,比较了睡眠起始前和睡眠起始后的时段。结果表明,在 sigma 频段,额叶的小世界值较高,表明连接性增强,睡眠起始时大脑网络的有序性降低,低频 delta 和 theta 频段的大脑网络有序性增强,表明其余脑区的连接中断。我们的研究结果描绘了维持额叶脑区功能连接的特定机制的时间和拓扑结构,也为睡眠起始后观察到的从前额到后向信息流方向的普遍性提供了可能的解释。人脑映射 38:5456-5464, 2017。© 2017 年 Wiley Periodicals, Inc.