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蝙蝠最大寿命的缩放比例。

Scaling of maximal lifespan in bats.

作者信息

Jürgens K D, Prothero J

机构信息

Zentrum Physiologie, Medizinische Hochschule Hannover, FRG.

出版信息

Comp Biochem Physiol A Comp Physiol. 1987;88(2):361-7. doi: 10.1016/0300-9629(87)90498-1.

Abstract
  1. Values for maximal lifespan in heterothermic and homeothermic bats as a function of body weight, brain weight and lifetime basal energy consumption were submitted to linear (log-log) and multiple regression analysis. 2. The results of the regression analyses of maximal lifespan in bats were compared with those reported for non-flying mammals based on both narrow and wide weight ranges. 3. It was found that the regression lines (linear or multiple) for maximal lifespan in bats (heterothermic or homeothermic) lie well above the regression lines for non-flying mammals. 4. Predictions of maximal lifespan in heterothermic bats based on estimated lifetime basal energy consumption and body weight are in reasonable agreement with observed values when torpor and hibernation behaviour are taken into account. 5. But observed values of maximal lifespan in homeothermic bats were found to lie substantially above the regression lines derived for non-flying mammals. 6. It was concluded that existing hypotheses do not account for the long lifespan observed in bats generally.
摘要
  1. 将异温性和恒温性蝙蝠的最大寿命值作为体重、脑重和终生基础能量消耗的函数,进行线性(对数-对数)和多元回归分析。2. 根据狭窄和宽泛的体重范围,将蝙蝠最大寿命的回归分析结果与非飞行哺乳动物的相关报告结果进行比较。3. 发现蝙蝠(异温性或恒温性)最大寿命的回归线(线性或多元)远高于非飞行哺乳动物的回归线。4. 当考虑到蛰伏和冬眠行为时,基于估计的终生基础能量消耗和体重对异温性蝙蝠最大寿命的预测与观察值合理相符。5. 但发现恒温性蝙蝠的最大寿命观察值远高于为非飞行哺乳动物得出的回归线。6. 得出的结论是,现有假设通常无法解释蝙蝠中观察到的长寿命现象。

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