Methods to estimate body temperature and energy expenditure dynamics in fed and fasted laboratory mice: effects of sleep deprivation and light exposure

Vincent van der Vinne, Laura E. McKillop, Sian L. Wilcox, James Cantley, Stuart N. Peirson, Steven J. Swoap, Vladyslav V. Vyazovskiy
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Abstract

Monitoring body temperature and energy expenditure in freely-moving laboratory mice remains a powerful methodology used widely across a variety of disciplines–including circadian biology, sleep research, metabolic phenotyping, and the study of body temperature regulation. Some of the most pronounced changes in body temperature are observed when small heterothermic species reduce their body temperature during daily torpor. Daily torpor is an energy saving strategy characterized by dramatic reductions in body temperature employed by mice and other species when challenged to meet energetic demands. Typical measurements used to describe daily torpor are the measurement of core body temperature and energy expenditure. These approaches can have drawbacks and developing alternatives for these techniques provides options that can be beneficial both from an animal-welfare and study-complexity perspective. First, this paper presents and assesses a method to estimate core body temperature based on measurements of subcutaneous body temperature, and second, a separate approach to better estimate energy expenditure during daily torpor based on core body temperature. Third, the effects of light exposure during the habitual dark phase and sleep deprivation during the light period on body temperature dynamics were tested preliminary in fed and fasted mice. Together, the here-published approaches and datasets can be used in the future to assess body temperature and metabolism in freely-moving laboratory mice.

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估算进食和禁食实验鼠体温和能量消耗动态的方法:剥夺睡眠和光照的影响
监测自由活动的实验室小鼠的体温和能量消耗仍然是一种强大的方法,广泛应用于多个学科--包括昼夜节律生物学、睡眠研究、代谢表型和体温调节研究。当小型异温物种在每日冬眠期间降低体温时,可以观察到一些最明显的体温变化。日休眠是一种节能策略,其特点是小鼠和其他物种在面临满足能量需求的挑战时会大幅降低体温。用于描述日休眠的典型测量方法是测量核心体温和能量消耗。这些方法都有缺点,从动物福利和研究复杂性的角度来看,开发这些技术的替代品提供了有益的选择。首先,本文介绍并评估了一种基于皮下体温测量的核心体温估算方法;其次,本文还介绍了一种基于核心体温的单独方法,以更好地估算每日冬眠期间的能量消耗。第三,在喂食和禁食的小鼠中初步测试了在习惯性黑暗阶段光照和在光照期间剥夺睡眠对体温动态的影响。总之,本文发表的方法和数据集可用于未来评估自由活动实验鼠的体温和新陈代谢。
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