Scarpetta Silvia, Morisi Niccolò, Mutti Carlotta, Azzi Nicoletta, Trippi Irene, Ciliento Rosario, Apicella Ilenia, Messuti Giovanni, Angiolelli Marianna, Lombardi Fabrizio, Parrino Liborio, Vaudano Anna Elisabetta
Department of Physics, University of Salerno, 84084 Fisciano, Italy.
INFN sez. Napoli Gr. Coll. Salerno, 84084 Fisciano, Italy.
iScience. 2023 Sep 9;26(10):107840. doi: 10.1016/j.isci.2023.107840. eCollection 2023 Oct 20.
Sleep plays a key role in preserving brain function, keeping brain networks in a state that ensures optimal computation. Empirical evidence indicates that this state is consistent with criticality, where scale-free neuronal avalanches emerge. However, the connection between sleep architecture and brain tuning to criticality remains poorly understood. Here, we characterize the critical behavior of avalanches and study their relationship with sleep macro- and micro-architectures, in particular, the cyclic alternating pattern (CAP). We show that avalanches exhibit robust scaling behaviors, with exponents obeying scaling relations consistent with the mean-field directed percolation universality class. We demonstrate that avalanche dynamics is modulated by the NREM-REM cycles and that, within NREM sleep, avalanche occurrence correlates with CAP activation phases-indicating a potential link between CAP and brain tuning to criticality. The results open new perspectives on the collective dynamics underlying CAP function, and on the relationship between sleep architecture, avalanches, and self-organization to criticality.
睡眠在维持大脑功能方面起着关键作用,使大脑网络处于一种确保最佳计算的状态。经验证据表明,这种状态与临界性一致,在临界状态下会出现无标度神经元雪崩。然而,睡眠结构与大脑向临界性调整之间的联系仍知之甚少。在这里,我们描述了雪崩的临界行为,并研究它们与睡眠宏观和微观结构的关系,特别是循环交替模式(CAP)。我们表明,雪崩表现出稳健的标度行为,其指数服从与平均场定向渗流普适类一致的标度关系。我们证明,雪崩动力学受非快速眼动-快速眼动周期调节,并且在非快速眼动睡眠期间,雪崩的发生与CAP激活阶段相关,这表明CAP与大脑向临界性调整之间存在潜在联系。这些结果为CAP功能背后的集体动力学以及睡眠结构、雪崩和向临界性的自组织之间的关系开辟了新的视角。