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在一天的光照和黑暗时段,大鼠大脑和核心体温与各种觉醒状态的关系变化。

Changes in the brain and core temperatures in relation to the various arousal states in rats in the light and dark periods of the day.

作者信息

Obál F, Rubicsek G, Alföldi P, Sáry G, Obál F

出版信息

Pflugers Arch. 1985 May;404(1):73-9. doi: 10.1007/BF00581494.

Abstract

In rats, brain temperature (Tbr) and core temperature (Tc) were recorded in parallel with the sleep-wake activity throughout the 24-h diurnal cycle, consisting of a 12-h light (L) and a 12-h dark (D) period. In order to characterize the temperature changes associated with the arousal states in the L and the D separately, (i) the average temperatures in wakefulness (W), non-rapid eye movement sleep (NREMS) and REM sleep (REMS), and at the transitions between the arousal states were calculated; (ii) the courses of temperatures before and after the transitions (falling asleep, awakening from NREMS or REMS, transition from NREMS to REMS) were determined; (iii) the rates of changes in Tbr and Tc were calculated for each state; and (iv) the correlations between the temperatures and the overall length of each arousal state, and between Tbr and Tc were studied. In both the L and D periods, Tbr and Tc decreased at the beginning of NREMS, then levelled off, and increased slightly before awakening. Apart from short arousals which did not affect temperature, Tbr and Tc increased in W, peaked 15-20 min after awakening, and declined significantly before the falling asleep. In REMS, Tbr increased at a high rate, while a slight increase in Tc was evident in the L only. Correlations between the temperatures and the arousal states were found in both the L and the D. The courses of Tbr and Tc were also correlated. The results support the existence of characteristic changes in body temperature related to the arousal states in the rat.

摘要

在大鼠中,在整个24小时昼夜周期内,同时记录脑温(Tbr)和核心体温(Tc)以及睡眠-觉醒活动,该周期由12小时光照(L)和12小时黑暗(D)阶段组成。为了分别表征与L期和D期觉醒状态相关的温度变化,(i)计算清醒(W)、非快速眼动睡眠(NREMS)和快速眼动睡眠(REMS)以及觉醒状态转换时的平均温度;(ii)确定转换前和转换后(入睡、从NREMS或REMS觉醒、从NREMS转换到REMS)的温度变化过程;(iii)计算每个状态下Tbr和Tc的变化率;(iv)研究温度与每种觉醒状态总时长之间以及Tbr和Tc之间的相关性。在L期和D期,NREMS开始时Tbr和Tc均下降,然后趋于平稳,并在觉醒前略有上升。除了不影响温度的短暂觉醒外,W期Tbr和Tc升高,觉醒后15 - 20分钟达到峰值,入睡之前显著下降。在REMS期,Tbr快速升高,而仅在L期Tc有轻微升高。在L期和D期均发现温度与觉醒状态之间存在相关性。Tbr和Tc的变化过程也具有相关性。这些结果支持大鼠体温存在与觉醒状态相关的特征性变化。

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