Institute of Biodiversity, Animal Health & Comparative Medicine, University of Glasgow, Glasgow, UK.
Swiss Ornithological Institute, Sempach, Switzerland.
Sci Rep. 2018 Jan 30;8(1):1907. doi: 10.1038/s41598-018-20240-4.
Body temperature of endotherms shows substantial within- and between-individual variation, but the sources of this variation are not fully understood in wild animals. Variation in body temperature can indicate how individuals cope with their environment via metabolic or stress-induced effects, both of which may relate to depletion of energy reserves. Body condition can reflect heat production through changes to metabolic rate made to protect energy reserves. Additionally, changes in metabolic processes may be mediated by stress-related glucocorticoid secretion, which is associated with altered blood-flow patterns that affect regional body temperatures. Accordingly, both body condition and glucocorticoid secretion should relate to body temperature. We used thermal imaging, a novel non-invasive method of temperature measurement, to investigate relationships between body condition, glucocorticoid secretion and body surface temperature in wild blue tits (Cyanistes caeruleus). Individuals with lower body condition had lower eye-region surface temperature in both non-breeding and breeding seasons. Eye-region surface temperature was also negatively correlated with baseline circulating glucocorticoid levels in non-breeding birds. Our results demonstrate that body surface temperature can integrate multiple aspects of physiological state. Consequently, remotely-measured body surface temperature could be used to assess such aspects of physiological state non-invasively in free-living animals at multiple life history stages.
温血动物的体温表现出显著的个体内和个体间差异,但在野生动物中,这种差异的来源尚未完全清楚。体温的变化可以通过代谢或应激诱导的影响来指示个体如何应对环境,这两者都可能与能量储备的消耗有关。身体状况可以通过改变代谢率来反映热量产生,以保护能量储备。此外,代谢过程的变化可能受到与应激相关的糖皮质激素分泌的调节,这与影响局部体温的血流模式的改变有关。因此,身体状况和糖皮质激素分泌都应该与体温有关。我们使用热成像技术,这是一种测量体温的新型非侵入性方法,研究了野生蓝山雀(Cyanistes caeruleus)的身体状况、糖皮质激素分泌和体表温度之间的关系。在非繁殖期和繁殖期,身体状况较低的个体的眼部区域表面温度较低。非繁殖鸟类的基础循环糖皮质激素水平与眼部区域表面温度呈负相关。我们的研究结果表明,体表温度可以整合生理状态的多个方面。因此,远程测量的体表温度可以在多个生活史阶段的自由生活动物中,非侵入性地评估其生理状态的这些方面。