Koteja P
Comp Biochem Physiol A Comp Physiol. 1987;87(1):205-8. doi: 10.1016/0300-9629(87)90447-6.
Basal and maximum metabolic rates, measured by oxygen consumption, for 18 species of wild mammals have been obtained from a search of literature records. The mass exponent of the allometric regression equation for maximum metabolic rate is significantly higher than that for BMR (0.841 and 0.745, respectively; P less than 0.05) in the group of animals examined. No significant correlation between mass-independent basal and maximum metabolic rates has been found. These results do not support the 'aerobic capacity' model of the origin of endothermy.
通过对文献记录的检索,已获得了18种野生哺乳动物的基础代谢率和最大代谢率(通过耗氧量测量)。在所研究的动物群体中,最大代谢率的异速生长回归方程的质量指数显著高于基础代谢率(分别为0.841和0.745;P小于0.05)。未发现与体重无关的基础代谢率和最大代谢率之间存在显著相关性。这些结果不支持关于恒温起源的“有氧能力”模型。