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首页> 外文期刊>Comparative biochemistry and physiology, Part A. Molecular and integrative physiology >The power of feeder-mask respirometry as a method for examining hummingbird energetics
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The power of feeder-mask respirometry as a method for examining hummingbird energetics

机译:喂食面罩呼吸测定法作为检查蜂鸟能量的一种方法

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Many birds spend important portions of their time and energy flying. For this reason, quantification of metabolic rates during flight is of crucial importance to understanding avian energy balance. Measurement of organismal gas exchange rates using a mask enclosing the whole head or respiratory orifices has served as an important tool for studying animal energetics because it can free the rest of the body, permitting movement. Application of so-called "mask respirometry" to the study of avian forward flight energetics presents unique challenges because birds must be tethered to gas analysis equipment thus typically necessitating use of a wind tunnel. Resulting potential alterations to a study organism's behaviour, physiology, and aerodynamics have made interpretation of such studies contentious. In contrast, the study of hovering flight energetics in hummingbirds using a specialized form of mask respirometry is comparatively easy and can be done without a wind tunnel. Small size, hovering flight, and a nectarivorous diet are characteristics shared by all hummingbird species that make these birds ideally suited for this approach. Specifically, nectar feeders are modified to function as respirometry masks hummingbirds voluntarily respire into when hover-feeding. Feeder-mask based respirometry has revealed some of the highest vertebrate metabolic rates in hovering hummingbirds. In this review I discuss techniques for the successful measurement of metabolic rate using feeder-mask respirometry. I also emphasize how this technique has been used to address fundamental questions regarding avian flight energetics such as capacities for fuel use and mechanisms by which ecology, behaviour and energy balance are linked.
机译:许多鸟类会花费大量时间和精力进行飞行。因此,飞行过程中代谢率的量化对于理解禽类能量平衡至关重要。使用封闭整个头部或呼吸孔的面罩来测量生物气体交换率已成为研究动物能量的重要工具,因为它可以释放身体的其余部分并允许运动。所谓“面罩呼吸测定法”在禽类前向飞行能量学研究中的应用提出了独特的挑战,因为必须将鸟拴在气体分析设备上,因此通常需要使用风洞。对研究有机体的行为,生理学和空气动力学的潜在改变使对此类研究的解释引起争议。相反,使用特殊形式的面罩呼吸测定法研究蜂鸟的盘旋飞行能量学相对容易,并且无需风洞即可完成。小型,盘旋飞行和食肉饮食是所有蜂鸟物种共有的特征,使这些鸟非常适合这种方法。具体来说,对花蜜喂食器进行了改良,使其可以作为呼吸测量面具,在悬停喂食时自动将蜂鸟吸入其中。基于馈线口罩的呼吸测定法揭示了在盘旋的蜂鸟中一些最高的脊椎动物代谢率。在这篇综述中,我讨论了使用馈线口罩呼吸测定法成功测量代谢率的技术。我还强调如何将此技术用于解决有关鸟类飞行能量学的基本问题,例如燃料使用的能力以及将生态,行为和能量平衡联系起来的机制。

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