Fundamentals of sleep regulation: Model and benchmark values for fractal and oscillatory neurodynamics

IF 6.7 2区 医学 Q1 NEUROSCIENCES
Róbert Bódizs , Bence Schneider , Péter P. Ujma , Csenge G. Horváth , Martin Dresler , Yevgenia Rosenblum
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Abstract

Homeostatic, circadian and ultradian mechanisms play crucial roles in the regulation of sleep. Evidence suggests that ratios of low-to-high frequency power in the electroencephalogram (EEG) spectrum indicate the instantaneous level of sleep pressure, influenced by factors such as individual sleep-wake history, current sleep stage, age-related differences and brain topography characteristics. These effects are well captured and reflected in the spectral exponent, a composite measure of the constant low-to-high frequency ratio in the periodogram, which is scale-free and exhibits lower interindividual variability compared to slow wave activity, potentially serving as a suitable standardization and reference measure. Here we propose an index of sleep homeostasis based on the spectral exponent, reflecting the level of membrane hyperpolarization and/or network bistability in the central nervous system in humans. In addition, we advance the idea that the U-shaped overnight deceleration of oscillatory slow and fast sleep spindle frequencies marks the biological night, providing somnologists with an EEG-index of circadian sleep regulation. Evidence supporting this assertion comes from studies based on sleep replacement, forced desynchrony protocols and high-resolution analyses of sleep spindles. Finally, ultradian sleep regulatory mechanisms are indicated by the recurrent, abrupt shifts in dominant oscillatory frequencies, with spindle ranges signifying non-rapid eye movement and non-spindle oscillations – rapid eye movement phases of the sleep cycles. Reconsidering the indicators of fundamental sleep regulatory processes in the framework of the new Fractal and Oscillatory Adjustment Model (FOAM) offers an appealing opportunity to bridge the gap between the two-process model of sleep regulation and clinical somnology.

睡眠调节的基本原理:分形和振荡神经动力学的模型和基准值。
体内平衡、昼夜节律和超昼夜节律机制在调节睡眠方面发挥着至关重要的作用。有证据表明,脑电图(EEG)频谱中的低频与高频功率比显示了睡眠压力的瞬时水平,它受到个人睡眠-觉醒历史、当前睡眠阶段、年龄相关差异和大脑地形特征等因素的影响。频谱指数能很好地捕捉和反映这些影响,频谱指数是周期图中恒定的低频与高频比率的综合测量指标,它不带刻度,与慢波活动相比,个体间的变异性较低,可作为合适的标准化和参考测量指标。在此,我们提出了一种基于频谱指数的睡眠平衡指数,它反映了人类中枢神经系统中膜超极化和/或网络双稳态的水平。此外,我们还提出了一个观点,即振荡慢速和快速睡眠主轴频率的 U 型夜间减速标志着生物夜间,为体质学家提供了昼夜节律睡眠调节的脑电图指数。支持这一观点的证据来自基于睡眠替代、强迫非同步协议和睡眠纺锤体高分辨率分析的研究。最后,超昼夜节律睡眠调节机制表现为主导振荡频率的反复、突然转变,其中纺锤形范围表示非快速眼动,而非纺锤形振荡则表示睡眠周期中的快速眼动阶段。在新的分形和振荡调整模型(FOAM)框架内重新考虑基本睡眠调节过程的指标,为弥合睡眠调节双过程模型与临床体质学之间的差距提供了一个极具吸引力的机会。
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来源期刊
Progress in Neurobiology
Progress in Neurobiology 医学-神经科学
CiteScore
12.80
自引率
1.50%
发文量
107
审稿时长
33 days
期刊介绍: Progress in Neurobiology is an international journal that publishes groundbreaking original research, comprehensive review articles and opinion pieces written by leading researchers. The journal welcomes contributions from the broad field of neuroscience that apply neurophysiological, biochemical, pharmacological, molecular biological, anatomical, computational and behavioral analyses to problems of molecular, cellular, developmental, systems, and clinical neuroscience.
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