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持续光照下大鼠多种昼夜节律之间的内源性同步

Internal synchronization among several circadian rhythms in rats under constant light.

作者信息

Honma K I, Hiroshige T

出版信息

Am J Physiol. 1978 Nov;235(5):R243-9. doi: 10.1152/ajpregu.1978.235.5.R243.

Abstract

Three biological rhythms (locomotor activity, body temperature, and plasma corticosterone) were measured simultaneously in individual rats under light-dark cycles and continuous light. Spontaneous locomotor activity was recorded on an Animex and body temperature was telemetrically monitored throughout the experiments. Blood samples were obtained serially at 2-h intervals on the experimental days. Phase angles of these rhythms were calculated by a least-squares spectrum analysis. Under light-dark cycles, the acrophases of locomotor activity, body temperature, and plasma corticosterone were found at 0029, 0106, and 1940 h, respectively. When rats were exposed to 200 lx continuous light, locomotor activity and body temperature showed free-running rhythms with a period of 25.2 h on the average. Plasma corticosterone levels determined at 12 days after exposure to continuous light exhibited a circadian rhythm with the acrophase shifted to 0720. The acrophases of locomotor activity and body temperature, determined simultaneously on the same day, were found to be located at 1303 and 1358 h, respectively. Phase-angle differences among the three rhythms on the 12th day of continuous light were essentially the same with those under the light-dark cycle. These results suggest that circadian rhythms of locomotor activity, body temperature, and plasma corticosterone are most probably coupled to a common internal oscillator in the rat.

摘要

在明暗循环和持续光照条件下,同时测量了个体大鼠的三种生物节律(运动活动、体温和血浆皮质酮)。在整个实验过程中,自发运动活动通过Animex记录,体温通过遥测进行监测。在实验日,每隔2小时连续采集血样。这些节律的相位角通过最小二乘谱分析计算得出。在明暗循环条件下,运动活动、体温和血浆皮质酮的峰值相位分别出现在0029、0106和1940时。当大鼠暴露于200勒克斯的持续光照下时,运动活动和体温呈现出平均周期为25.2小时的自由运行节律。在暴露于持续光照12天后测定的血浆皮质酮水平呈现出昼夜节律,峰值相位移至0720。在同一天同时测定的运动活动和体温的峰值相位分别位于1303和1358时。持续光照第12天三种节律之间的相位角差异与明暗循环条件下的基本相同。这些结果表明,大鼠的运动活动、体温和血浆皮质酮的昼夜节律很可能与一个共同的内部振荡器相耦合。

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