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Adaptive temperature regulation in the little bird in winter: predictions from a stochastic dynamic programming model

机译:冬季小鸟的自适应温度调节:随机动态规划模型的预测

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Several species of small birds are resident in boreal forests where environmental temperatures can be - 20 to - 30 degrees C, or even lower, in winter. As winter days are short, and food is scarce, winter survival is a challenge for small endothermic animals. A bird of this size will have to gain almost 10% of its lean body mass in fat every day to sustain overnight metabolism. Birds such as parids (titmice and chickadees) can use facultative hypothermia, a process in which body temperature is actively down-regulated to a specific level, to reduce heat loss and thus save energy. During cold winter nights, these birds may decrease body temperature from the normal from 42 degrees down to 35 degrees C, or even lower in some species. However, birds are unable to move in this deep hypothermic state, making it a risky strategy if predators are around. Why, then, do small northern birds enter a potentially dangerous physiological state for a relatively small reduction in energy expenditure? We used stochastic dynamic programming to investigate this. Our model suggests that the use of nocturnal hypothermia at night is paramount in these biomes, as it would increase winter survival for a small northern bird by 58% over a winter of 100 days. Our model also explains the phenomenon known as winter fattening, and its relationship to thermoregulation, in northern birds.
机译:几种小鸟居住在北方森林中,环境温度可以是 - 20至 - 30摄氏度,甚至在冬季更低。随着冬季的日子,食物稀缺,冬季生存是小型吸热动物的挑战。每天都必须在脂肪中获得近10%的瘦身体重,以维持过夜新陈代谢。鸟类(钉子和鹰雀)的鸟类可以使用繁郎低温,其中体温积极下调到特定水平的过程,以减少热量损失,从而节省能量。在寒冷的冬夜,这些鸟类可能将体温从正常从42度降低到35摄氏度,甚至在某些物种中降低。然而,如果捕食者周围,鸟类无法在这种深度低温状态下移动,这是一种冒险的策略。那么,为什么小北部的鸟类进入潜在的危险生理状态,以减少能源支出减少?我们使用随机动态编程来调查此问题。我们的模型表明,晚上在这些生物群中使用夜间体温过低,因为它将在100天的冬季将冬季北部的冬季生存增加58%。我们的模型还解释了冬季繁殖的冬季育肥的现象及其与热调节的关系。

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