Key Laboratory of Smart Farming for Agricultural Animals, Wuhan, 430070, People's Republic of China.
Laboratory of Small Ruminant Genetics, Breeding and Reproduction, Huazhong Agricultural University, Wuhan, 430070, People's Republic of China.
Trop Anim Health Prod. 2024 Apr 22;56(4):138. doi: 10.1007/s11250-024-03995-z.
Rectal temperature is widely used as an indicator of animal health. However, rectal temperature is conventionally measured by an invasive method, which may reduce animal welfare. So, this study aimed to determine the relationships between the deep-body (core) temperature and body surface temperatures in goats and develop a linear regression equation to establish the core temperature based on body surface temperatures. Body surface temperatures (head, eye, muzzle, horn, back, scrotum and groin) of goats were measured by infrared thermography (IRT). Ambient temperatures were measured by digital thermometer. Core temperatures were measured by a digital vet thermometer. Pearson correlation analysis was used to analyze the relationship between body surface temperatures, ambient temperature, and core temperature. Simple linear regression analysis was used to develop core temperature assessment equations. Correlation analysis showed that groin temperature was highly correlated with core temperature, and low correlated with ambient temperature. The body surface temperature of other region was low correlated with core temperature, and highly correlated with ambient temperature. Regression analysis showed that the determination coefficient of core temperature assessment equation based on groin temperature was the highest (P < 0.0001, R = 0.55), and those based on surface temperature of other regions were low (P < 0.01, R ≤ 0.16). We concluded that body surface temperatures obtained by IRT could be used for the assessment of goat core temperature. The core temperature assessment equations developed by the temperature of the body surface, which is less affected by ambient temperature, was found to have a higher determination coefficient than the equations developed using body surface temperature that is more affected by ambient temperature.
直肠温度被广泛用作动物健康的指标。然而,直肠温度通常通过有创方法测量,这可能会降低动物福利。因此,本研究旨在确定山羊深部(核心)温度与体表温度之间的关系,并开发一个线性回归方程,根据体表温度建立核心温度。通过红外热成像(IRT)测量山羊的体表温度(头部、眼部、口鼻部、角、背部、阴囊和腹股沟)。使用数字温度计测量环境温度。使用数字兽医温度计测量核心温度。使用 Pearson 相关分析来分析体表温度、环境温度和核心温度之间的关系。使用简单线性回归分析来开发核心温度评估方程。相关性分析表明,腹股沟温度与核心温度高度相关,与环境温度低度相关。其他区域的体表温度与核心温度低度相关,与环境温度高度相关。回归分析表明,基于腹股沟温度的核心温度评估方程的确定系数最高(P<0.0001,R=0.55),而基于其他区域体表温度的方程则较低(P<0.01,R≤0.16)。我们得出结论,IRT 获得的体表温度可用于评估山羊的核心温度。受环境温度影响较小的体表温度开发的核心温度评估方程的确定系数高于受环境温度影响较大的体表温度开发的方程。