Ishihara Asuka, Park Insung, Tokuyama Kumpei
International Institute for Integrative Sleep Medicine (WPI-IIIS), University of Tsukuba.
Brain Nerve. 2022 Feb;74(2):173-178. doi: 10.11477/mf.1416202003.
Mammals and birds seek a warm environment prior to sleep, which triggers vasodilatation and body cooling. Ambient temperatures outside the thermoneutral zone suppress sleep, particularly rapid eye movement (REM) sleep. We discuss the neurocircuit interactions associated with thermal and sleep regulation that occur primarily in the hypothalamic areas. An increase in ambient temperature stimulates the median preoptic/medial preoptic area of the hypothalamus, decreases body temperature, and increases non-REM sleep. Similarly, optical stimulation of the ventrolateral preoptic nucleus, which contains galanin (VLPO), results in body cooling and non-REM sleep. A decrease in VLPO disrupts sleep in elderly individuals and may also be associated with reduced decline in core body temperature during sleep. However, stimulation of neurons that synthesize melanin-concentrating hormone in the lateral hypothalamus decreases body temperature and induces REM sleep. We also discussed the acute effect of light on sleep induction and decreased body temperature, implicated with gamma-aminobutyric acid-ergic neurons in the preoptic area. Further investigation is needed to determine the mechanisms that induce physiological responses in diurnal and nocturnal species. These studies will contribute to a better understanding of the association between sleep and thermoregulation.
哺乳动物和鸟类在睡眠前会寻找温暖的环境,这会引发血管舒张和身体降温。热中性区以外的环境温度会抑制睡眠,尤其是快速眼动(REM)睡眠。我们讨论了主要发生在下丘脑区域的与体温调节和睡眠调节相关的神经回路相互作用。环境温度升高会刺激下丘脑的视前正中/内侧视前区,降低体温,并增加非快速眼动睡眠。同样,对视前外侧核(其中含有甘丙肽,即VLPO)进行光刺激会导致身体降温并进入非快速眼动睡眠。VLPO减少会扰乱老年人的睡眠,也可能与睡眠期间核心体温下降减少有关。然而,刺激下丘脑外侧合成促黑素细胞激素的神经元会降低体温并诱导快速眼动睡眠。我们还讨论了光对睡眠诱导和体温降低的急性影响,这与视前区的γ-氨基丁酸能神经元有关。需要进一步研究以确定在昼行性和夜行性物种中诱导生理反应的机制。这些研究将有助于更好地理解睡眠与体温调节之间的关联。