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测量具有双重呼吸方式的鱼类的氧气摄取量。

Measuring oxygen uptake in fishes with bimodal respiration.

作者信息

Lefevre S, Bayley M, McKenzie D J

机构信息

Department of Biosciences, The Faculty of Mathematics and Natural Sciences, University of Oslo, P. O. Box 1066, 0316 Oslo, Norway.

Zoophysiology, Aarhus University, Department of Bioscience, C. F. Møllers Allé 3, 8000 Aarhus C, Denmark.

出版信息

J Fish Biol. 2016 Jan;88(1):206-31. doi: 10.1111/jfb.12698. Epub 2015 Sep 11.

Abstract

Respirometry is a robust method for measurement of oxygen uptake as a proxy for metabolic rate in fishes, and how species with bimodal respiration might meet their demands from water v. air has interested researchers for over a century. The challenges of measuring oxygen uptake from both water and air, preferably simultaneously, have been addressed in a variety of ways, which are briefly reviewed. These methods are not well-suited for the long-term measurements necessary to be certain of obtaining undisturbed patterns of respiratory partitioning, for example, to estimate traits such as standard metabolic rate. Such measurements require automated intermittent-closed respirometry that, for bimodal fishes, has only recently been developed. This paper describes two approaches in enough detail to be replicated by the interested researcher. These methods are for static respirometry. Measuring oxygen uptake by bimodal fishes during exercise poses specific challenges, which are described to aid the reader in designing experiments. The respiratory physiology and behaviour of air-breathing fishes is very complex and can easily be influenced by experimental conditions, and some general considerations are listed to facilitate the design of experiments. Air breathing is believed to have evolved in response to aquatic hypoxia and, probably, associated hypercapnia. The review ends by considering what realistic hypercapnia is, how hypercapnic tropical waters can become and how this might influence bimodal animals' gas exchange.

摘要

呼吸测量法是一种可靠的方法,用于测量鱼类的摄氧量以作为代谢率的指标,并且具有双峰呼吸的物种如何从水中和空气中满足其需求,这一问题已经吸引了研究人员一个多世纪。以各种方式解决了同时测量水和空气中的摄氧量(最好是同时测量)的挑战,在此进行简要回顾。这些方法不太适合进行长期测量,而长期测量对于确定获得不受干扰的呼吸分配模式是必要的,例如,用于估计诸如标准代谢率等特征。这样的测量需要自动化的间歇封闭式呼吸测量法,对于双峰鱼类来说,这种方法直到最近才被开发出来。本文详细描述了两种方法,以便感兴趣的研究人员能够重复。这些方法用于静态呼吸测量。测量双峰鱼类在运动过程中的摄氧量带来了特定的挑战,本文对此进行了描述,以帮助读者设计实验。空气呼吸鱼类的呼吸生理学和行为非常复杂,很容易受到实验条件的影响,本文列出了一些一般注意事项以促进实验设计。空气呼吸被认为是为了应对水生缺氧以及可能相关的高碳酸血症而进化的。本文最后考虑了实际的高碳酸血症是什么样的、热带水域如何会出现高碳酸血症以及这可能如何影响双峰动物的气体交换。

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