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Muscle temperature is least altered during total sleep deprivation in rats

机译:在大鼠的总睡眠剥夺期间肌肉温度最少改变

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It has often been said that the brain is mostly benefitted from sleep. To understand the importance of sleep, extensive studies on other organs are too required. One such unexplored area is the understanding of muscle physiology during the sleep-wake cycle. Changes in muscle tone with different sleep phases are evident from the rapid eye movement sleep muscle atonia. There is variation in brain and body temperature during sleep stages, the brain temperature being higher during rapid eye movement sleep than slow-wave sleep. However, the change in muscle temperature with different sleep stages is not known. In this study, we have implanted pre-calibrated K-type thermocouples in the hypothalamus and the dorsal nuchal muscle, and a peritoneal transmitter to monitor the hypothalamic, muscle, and body temperature respectively in rats during 24 h sleep-wake cycle. The changes in muscle, body, and hypothalamic temperature during total sleep deprivation were also monitored. During normal sleep-wake stages, the temperature in the decreasing order was that of the hypothalamus, body, and muscle. Total sleep deprivation by gentle handling caused a significant increase in hypothalamic and body temperature, while there was least change in the muscle temperature. The circadian rhythm of the hypothalamic and body temperature in the sleep-deprived rats was disrupted, while the same was preserved in the muscle temperature. The results of our study show that muscle atonia during rapid eye movement sleep is a physiologically regulated thermally quiescent muscle state offering a conducive environment for muscle rest and repair.
机译:人们常说,睡眠对大脑的益处最大。为了理解睡眠的重要性,还需要对其他器官进行广泛的研究。其中一个尚未探索的领域是对睡眠-觉醒周期中肌肉生理学的理解。不同睡眠阶段的肌肉张力变化从快速眼动睡眠肌肉无力中可以明显看出。在睡眠阶段,大脑和体温会发生变化,快速眼动睡眠时的大脑温度高于慢波睡眠。然而,不同睡眠阶段肌肉温度的变化尚不清楚。在这项研究中,我们在大鼠的下丘脑和颈背肌中植入了预先校准的K型热电偶,并在24小时的睡眠-觉醒周期中分别植入了一个腹膜传输器来监测下丘脑、肌肉和体温。在完全睡眠剥夺期间,还监测了肌肉、身体和下丘脑温度的变化。在正常睡眠-觉醒阶段,下丘脑、身体和肌肉的温度依次降低。温和处理导致的完全睡眠剥夺导致下丘脑和体温显著升高,而肌肉温度变化最小。睡眠剥夺大鼠下丘脑和体温的昼夜节律被破坏,而肌肉温度保持不变。我们的研究结果表明,快速眼动睡眠期间的肌肉无力症是一种生理调节的热静态肌肉状态,为肌肉休息和修复提供了有利的环境。

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