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Circadian Rhythm and Sleep Disruption: Causes, Metabolic Consequences, and Countermeasures

机译:昼夜节律和睡眠中断:原因,代谢后果和对策

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Circadian (~24-hour) timing systems pervade all kingdoms of life and temporally optimize behavior and physiology in humans. Relatively recent changes to our environments, such as the introduction of artificial lighting, can disorganize the circadian system, from the level of the molecular clocks that regulate the timing of cellular activities to the level of synchronization between our daily cycles of behavior and the solar day. Sleep/wake cycles are intertwined with the circadian system, and global trends indicate that these, too, are increasingly subject to disruption. A large proportion of the world's population is at increased risk of environmentally driven circadian rhythm and sleep disruption, and a minority of individuals are also genetically predisposed to circadian misalignment and sleep disorders. The consequences of disruption to the circadian system and sleep are profound and include myriad metabolic ramifications, some of which may be compounded by adverse effects on dietary choices. If not addressed, the deleterious effects of such disruption will continue to cause widespread health problems; therefore, implementation of the numerous behavioral and pharmaceutical interventions that can help restore circadian system alignment and enhance sleep will be important.
机译:昼夜节日(〜24小时)定时系统遍历所有生命王国,在人类中暂时优化行为和生理学。对我们的环境的最近的变化,例如引入人工照明,可以混杂化昼夜分子钟的水平,从调节细胞活动的时序到我们日常行为和太阳日之间的日常循环之间的同步水平。睡眠/唤醒周期与昼夜昼夜系统交织在一起,全球趋势表明这些也越来越多地受到破坏。世界上大部分的人口在环境驱动的昼夜节律和睡眠中断的风险上升,少数人也遗留到昼夜评价和睡眠障碍。中断对昼夜宿舍和睡眠的后果是深刻的,包括无数代谢后果,其中一些可以通过对饮食选择的不利影响来复杂。如果没有解决,这种中断的有害影响将继续造成广泛的健康问题;因此,实施有助于恢复昼夜昼夜系统对齐和增强睡眠的众多行为和药物干预措施将是重要的。

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