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Cool running: locomotor performance at low body temperature in mammals

机译:冷运转:哺乳动物在低体温下的运动能力

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摘要

Mammalian torpor saves enormous amounts of energy, but a widely assumed cost of torpor is immobility and therefore vulnerability to predators. Contrary to this assumption, some small marsupial mammals in the wild move while torpid at low body temperatures to basking sites, thereby minimizing energy expenditure during arousal. Hence, we quantified how mammalian locomotor performance is affected by body temperature. The three small marsupial species tested, known to use torpor and basking in the wild, could move while torpid at body temperatures as low as 14.8–17.9°C. Speed was a sigmoid function of body temperature, but body temperature effects on running speed were greater than those in an ectothermic lizard used for comparison. We provide the first quantitative data of movement at low body temperature in mammals, which have survival implications for wild heterothermic mammals, as directional movement at low body temperature permits both basking and predator avoidance.
机译:哺乳动物的r鱼可以节省大量能源,但是人们普遍认为cost鱼的成本是固定的,因此容易受到食肉动物的伤害。与此假设相反,野外的一些有袋小哺乳动物在低体温时会蠕动到晒太阳的位置,从而将唤醒时的能量消耗降至最低。因此,我们量化了哺乳动物运动能力如何受体温影响。被测试的三种有袋小物种已知在野外使用火炬和取暖,它们在体温低至14.8–17.9°C时可能会蠕动而移动。速度是体温的S形函数,但是体温对跑步速度的影响要大于用于比较的外热蜥蜴。我们提供了哺乳动物低体温运动的第一个定量数据,这对野生异热哺乳动物具有生存意义,因为低体温的定向运动既可以避免食也可以避免捕食。

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