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Circadian temperature and activity rhythms in mice under free-running and entrained conditions; Assessment after purification of the temperature rhythm

机译:自由奔跑和夹带条件下小鼠的昼夜节律和活动节律;净化后的温度节律评估

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Six female mice were studied separately for six weeks, first in constant light (3001x), and then on a 12:12 L:D schedule (light on 07:00-19:00 h). Food and water were available ad libitum. Abdominal temperature and spontaneous locomotor activity were measured every 10 min. In constant light, the animals free-ran with both temperature and activity records showing circadian rhythms that were significantly greater than 24 h; by contrast, in the LD schedule, the circadian rhythms had become entrained and showed a stable phase relation to this schedule. The direct masking effects upon raw temperatures caused by bursts of activity were clearly seen, and could be removed by a process of 'purification'. A comparison of the activity profiles during the entrained and free-running phases showed that the imposed light-dark cycle resulted in decreased activity in the light, increased activity in the dark, and bursts of activity at the light-dark and dark-light transitions. Masking effects due to the activity profile were present in the raw temperature profile, and many could be removed by purification using the activity profile; however, there was evidence that other masking effects, independent of activity, were present also. The efficacy of thermoregulatory compensation, as assessed from the rise of core temperature produced by spontaneous locomotor activity, was, in comparison with the free-running condition, increased in the dark phase and decreased in the light phase; this would appear to be one way to limit the temperature rise that occurs in the active phase of the rest-activity cycle. [References: 24]
机译:分别对六只雌性小鼠进行为期六周的研究,首先在恒定光照下(3001x),然后按照12:12 L:D时间表(在07:00-19:00 h光照)进行研究。食物和水可随意获得。每10分钟测量一次腹部温度和自发运动能力。在持续光照下,动物自由运动,并记录温度和活动,昼夜节律明显大于24小时。相反,在LD时间表中,昼夜节律变得很紧张,并且与该时间表具有稳定的相位关系。可以清楚地看到由于活动爆发而对原始温度产生的直接掩盖效应,可以通过“纯化”过程消除。对夹带和自由运行阶段的活动曲线的比较表明,强加的暗-暗循环导致光的活动减少,黑暗中的活动增加,以及在明暗和暗光过渡时爆发的活动。原始温度曲线中存在由于活性曲线而引起的掩盖效应,可以通过使用活性曲线进行纯化来去除许多效应。然而,有证据表明还存在其他掩盖效应,与活性无关。根据自发运动的活动引起的核心温度升高评估的温度调节补偿的功效与自由行驶条件相比,在黑暗阶段增加,而在明亮阶段减少;这似乎是限制在剩余活动周期的活跃阶段发生的温度上升的一种方法。 [参考:24]

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