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蜥蜴耐力和运动能量学的热依赖性

Thermal dependence of endurance and locomotory energetics in a lizard.

作者信息

John-Alder H B, Bennett A F

出版信息

Am J Physiol. 1981 Nov;241(5):R342-9. doi: 10.1152/ajpregu.1981.241.5.R342.

Abstract

The thermal dependencies of endurance and the rates of oxygen cnsumption (VO2) and carbon dioxide production (VCO2) were determined for the lizard Dipsosaurus dorsalis walking on a treadmill. The thermal dependencies of endurance and maximal VO2 (VO2 max) are nerly identical. The maximal sustainable speed and the speed at which VO2 max is attained at each experimental body temperature are the same. The net cost of locomotion (the slope of VO2 vs. speed) is termperature independent. Resting VO2 and the incremental change in VO2 required to support locomotion at a sustainable speed are higher at 40 degrees C than at 25 degrees C. Therefore, the total cost of locomotion (VO2 divided by speed) is greater at 40 degrees C. However, the minimum cost of transport, attained at the maximal sustainable speed, is temperature independent. The results clearly indicate that maintenance of a high body temperature is energetically expensive for Dipsosaurus, but that the associated expanded activity capacity enables this lizard to avoid an obligate increase in the energetic requirements of locomotion.

摘要

测定了在跑步机上行走的西部斑纹蜥蜴(Dipsosaurus dorsalis)耐力以及耗氧率(VO2)和二氧化碳产生率(VCO2)的热依赖性。耐力和最大耗氧量(VO2 max)的热依赖性几乎相同。在每个实验体温下,最大可持续速度以及达到VO2 max时的速度是相同的。运动的净成本(VO2与速度的斜率)与温度无关。在40摄氏度时,静息VO2以及以可持续速度支持运动所需的VO2增量变化高于25摄氏度时。因此,在40摄氏度时运动的总成本(VO2除以速度)更高。然而,在最大可持续速度下达到的最低运输成本与温度无关。结果清楚地表明,维持高体温对西部斑纹蜥蜴来说在能量上是昂贵的,但相关的活动能力扩展使这种蜥蜴能够避免运动能量需求的必然增加。

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