首页> 外文期刊>Behavioural Brain Research: An International Journal >Remote long-term registrations of sleep-wake rhythms, core body temperature and activity in marmoset monkeys
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Remote long-term registrations of sleep-wake rhythms, core body temperature and activity in marmoset monkeys

机译:mar猴的远程长期睡眠觉醒节奏,核心体温和活动

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Initial studies in the day active marmoset monkey (Callithrix jacchus) indicate that the sleep-wake cycle of these non-human primates resembles that of humans and therefore conceivably represent an appropriate model for human sleep. The methods currently employed for sleep studies in marmosets are limited. The objective of this study was to employ and validate the use of specific remote monitoring system technologies that enable accurate long-term recordings of sleep-wake rhythms and the closely related rhythms of core body temperature (CBT) and locomotor activity in unrestrained group-housed marmosets. Additionally, a pilot sleep deprivation (SD) study was performed to test the recording systems in an applied experimental setup. Our results show that marmosets typically exhibit a monophasic sleep pattern with cyclical alternations between NREM and REM sleep. CBT displays a pronounced daily rhythm and locomotor activity is primarily restricted to the light phase. SD caused an immediate increase in NREM sleep time and EEG slow-wave activity as well as a delayed REM sleep rebound that did not fully compensate for REM sleep that had been lost during SD. In conclusion, the combination of two innovative technical approaches allows for simultaneous measurements of CBT, sleep cycles and activity in multiple subjects. The employment of these systems represents a significant refinement in terms of animal welfare and will enable many future applications and longitudinal studies of circadian rhythms in marmosets.
机译:在白天活动的mo猴(Callithrix jacchus)中的初步研究表明,这些非人类灵长类动物的睡眠-觉醒周期类似于人类,因此可以想象它代表了人类睡眠的合适模型。目前在mar猴中进行睡眠研究的方法是有限的。这项研究的目的是采用和验证特定的远程监控系统技术的使用,这些技术能够准确记录长期的睡眠-觉醒节律以及与之相关的核心体温(CBT)和运动自律活动的紧密节律。 mos猴。此外,还进行了一项试点睡眠剥夺(SD)研究,以在应用的实验设置中测试记录系统。我们的结果表明,mar猴通常表现出单相睡眠模式,NREM和REM睡眠之间呈周期性交替。 CBT显示出明显的每日节律,运动活动主要限于轻度阶段。 SD导致NREM睡眠时间和EEG慢波活动的立即增加,以及REM睡眠反弹的延迟,不能完全弥补SD期间失去的REM睡眠。总之,两种创新技术方法的结合可以同时测量多个受试者的CBT,睡眠周期和活动。这些系统的采用代表了动物福利方面的重大改进,并将使mar猴的昼夜节律有许多未来的应用和纵向研究。

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