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Does the metabolic rate-flight speed relationship vary among geometrically similar birds of different mass?

机译:不同质量的几何相似鸟类之间的代谢率-飞行速度关系是否有所不同?

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摘要

Based on aerodynamic considerations, the energy use-flight speed relationship of all airborne animals and aircraft should be U-shaped. However, measures of the metabolic rate-flight speed relationship in birds have been available since Tucker's pioneering experiments with budgerigars nearly forty years ago, but this classic work remains the only study to have found a clearly U-shaped metabolic power curve. The available data suggests that the energetic requirements for flight within this species are unique, yet the metabolic power curve of the budgerigar is widely considered representative of birds in general. Given these conflicting results and the observation that the budgerigar's mass is less than 50% of the next smallest species to have been studied, we asked whether large and small birds have metabolic power curves of different shapes. To address this question we measured the rates of oxygen uptake and wingbeat kinematics in budgerigars and cockatiels flying within a variable-speed wind tunnel. These species are close phylogenetic relatives, have similar flight styles, wingbeat kinematics, and are geometrically similar but have body masses that differ by a factor of two. In contrast to our expectations, we found the metabolic rate-flight speed relationship of both species to be acutely U-shaped. We also found that neither budgerigars nor cockatiels used their normal intermittent flight style while wearing a respirometric mask. We conclude that species size differences alone do not explain the previously unique metabolic power curve of the budgerigar; however, due to the absence of comparable data we cannot evaluate whether the mask-related kinematic response we document influences the metabolic rate-flight speed relationship of these parrots, or whether the energetics of flight differ between this and other avian clades.
机译:基于空气动力学的考虑,所有空中动物和飞机的能量使用-飞行速度关系应为U形。然而,自塔克在40年前对虎皮鹦鹉进行开创性实验以来,就已经可以测量鸟类的代谢率与飞行速度之间的关系,但是这项经典的工作仍然是唯一发现明显的U形代谢能力曲线的研究。现有数据表明,在该物种内飞行所需的能量是独特的,但一般认为虎皮鹦鹉的代谢能力曲线代表鸟类。鉴于这些矛盾的结果以及观察到的虎皮鹦鹉的质量不到所研究的下一个最小物种的50%,我们询问大型和小型鸟类是否具有不同形状的代谢能力曲线。为了解决这个问题,我们测量了在变速风洞中飞行的虎皮鹦鹉和小鹦鹉的氧气吸收率和翅膀运动学。这些物种是近缘的近缘种,具有相似的飞行方式,翅膀运动学,并且在几何上相似,但体重相差两倍。与我们的预期相反,我们发现这两个物种的代谢率与飞行速度之间的关系呈U形。我们还发现,虎皮鹦鹉和小鹦鹉都没有戴正常的间歇飞行样式,而是戴着呼吸面具。我们得出的结论是,仅物种大小的差异并不能解释虎皮鹦鹉以前独特的代谢能力曲线;但是,由于缺乏可比数据,我们无法评估我们记录的面罩相关运动反应是否会影响这些鹦鹉的新陈代谢速率与飞行速度之间的关系,或者该飞行进化力与其他鸟类进化枝之间的飞行能量是否不同。

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