Kayaba Momoko, Park Insung, Iwayama Kaito, Seya Yumi, Ogata Hitomi, Yajima Katsuhiko, Satoh Makoto, Tokuyama Kumpei
International Institute for Integrative Sleep Medicine, University of Tsukuba, Tennodai1-1-1, Tsukuba, 305-8575, Ibaraki, Japan.
Doctoral Program in Sports Medicine, Graduate School of Comprehensive Human Sciences, University of Tsukuba, Tennodai1-1-1, Tsukuba, 305-8574, Ibaraki, Japan.
Metabolism. 2017 Apr;69:14-23. doi: 10.1016/j.metabol.2016.12.016. Epub 2017 Jan 4.
Human sleep is generally consolidated into a single prolonged period, and its metabolic consequence is to impose an extended period of fasting. Changes in sleep stage and homeostatic sleep drive following sleep onset may affect sleeping metabolic rate through cross talk between the mechanisms controlling energy metabolism and sleep. The purpose of this study was to isolate the effects of sleep stage and time after sleep onset on sleeping metabolic rate.
The sleeping metabolic rate of 29 healthy adults was measured using whole room indirect calorimetry, during which polysomnographic recording of sleep was performed. The effects of sleep stage and time after sleep onset on sleeping metabolic rate were evaluated using a semi-parametric regression analysis. A parametric analysis was used for the effect of sleep stage and a non-parametric analysis was used for the effect of time.
Energy expenditure differed significantly between sleep stages: wake after sleep onset (WASO)>stage 2, slow wave sleep (SWS), and REM; stage 1>stage 2 and SWS; and REM>SWS. Similarly, carbohydrate oxidation differed significantly between sleep stages: WASO > stage 2 and SWS; and stage 1>SWS. Energy expenditure and carbohydrate oxidation decreased during the first half of sleep followed by an increase during the second half of sleep.
This study identified characteristic phenotypes in energy expenditure and carbohydrate oxidation indicating that sleeping metabolic rate differs between sleep stages.
人类睡眠通常会整合成一个单一的较长时间段,其代谢结果是导致一段较长时间的禁食。睡眠开始后睡眠阶段和睡眠稳态驱动力的变化可能通过控制能量代谢和睡眠的机制之间的相互作用来影响睡眠代谢率。本研究的目的是分离睡眠阶段和睡眠开始后的时间对睡眠代谢率的影响。
使用全室间接量热法测量了29名健康成年人的睡眠代谢率,在此期间进行了多导睡眠图记录。使用半参数回归分析评估睡眠阶段和睡眠开始后的时间对睡眠代谢率的影响。对睡眠阶段的影响采用参数分析,对时间的影响采用非参数分析。
睡眠阶段之间的能量消耗存在显著差异:睡眠开始后觉醒(WASO)>2期、慢波睡眠(SWS)和快速眼动睡眠(REM);1期>2期和SWS;REM>SWS。同样,睡眠阶段之间的碳水化合物氧化也存在显著差异:WASO>2期和SWS;1期>SWS。睡眠前半段能量消耗和碳水化合物氧化降低,后半段增加。
本研究确定了能量消耗和碳水化合物氧化的特征表型,表明睡眠代谢率在不同睡眠阶段有所不同。