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Sleep homeostasis during daytime food entrainment in mice

机译:在白天食物夹带期间睡眠稳态

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Twenty-four hour rhythms of physiology and behavior are driven by the environment and an internal endogenous timing system. Daily restricted feeding (RF) in nocturnal rodents during their inactive phase initiates food anticipatory activity (FAA) and a reorganization of the typical 24-hour sleep-wake structure. Here, we investigate the effects of daytime feeding, where food access was restricted to 4 hours during the light period ZT4-8 (Zeitgeber time; ZT0 is lights on), on sleep-wake architecture and sleep homeostasis in mice. Following 10 days of RF, mice were returned to ad libitum feeding. To mimic the spontaneous wakefulness associated with FAA and daytime feeding, mice were then sleep deprived between ZT3-6. Although the amount of wake increased during FAA and subsequent feeding, total wake time over 24 hours remained stable as the loss of sleep in the light phase was compensated for by an increase in sleep in the dark phase. Interestingly, sleep that followed spontaneous wake episodes during the dark period and the extended period of wake associated with FAA, exhibited lower levels of slow-wave activity (SWA) when compared to baseline or after sleep deprivation, despite a similar duration of waking. This suggests an evolutionary mechanism of reducing sleep drive during negative energy balance to enable greater arousal for food-seeking behaviors. However, the total amount of sleep and SWA accumulated during the 24 hours was similar between baseline and RF. In summary, our study suggests that despite substantial changes in the daily distribution and quality of wake induced by RF, sleep homeostasis is maintained.
机译:环境和行为的二十四小时是由环境和内部内源性定时系统驱动的。在其非活动阶段期间夜间啮齿动物的日常受限制的喂养(RF)引发食品预期活动(FAA)和典型的24小时睡眠唤醒结构的重组。在这里,我们调查白天喂养的影响,其中食物访问在光期ZT4-8(ZT0是灯光的灯光期间4小时内限制为4小时,在睡眠唤醒建筑和小鼠中睡眠稳定性。在RF的10天后,小鼠返回到阅中。为了模仿与联邦航空局和日间喂养相关的自发醒来,小鼠在ZT3-6之间缺乏睡眠。尽管在FAA期间和随后的饲养过程中唤醒量增加,但由于在黑暗相中睡眠中的睡眠损失,总唤醒时间超过24小时仍然稳定。有趣的是,与基线或睡眠剥夺相比,在黑暗时期和与FAA相关的延长术后睡眠期间的睡眠以及与FAA相关的延长的速度较低,尽管醒来的睡眠剥夺后,睡眠剥夺。这表明在负能量平衡期间减少睡眠驱动的进化机制,以使更大的唤起令人讨厌的食物行为。然而,在24小时内累积的睡眠和SWA的总量在基线和RF之间相似。总之,我们的研究表明,尽管RF诱导的日常分布和尾部质量具有大量变化,但维持睡眠稳态。

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