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首页> 外文期刊>Journal of Fish Biology >Measuring maximum and standard metabolic rates using intermittent-flow respirometry: a student laboratory investigation of aerobic metabolic scope and environmental hypoxia in aquatic breathers
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Measuring maximum and standard metabolic rates using intermittent-flow respirometry: a student laboratory investigation of aerobic metabolic scope and environmental hypoxia in aquatic breathers

机译:使用间歇流呼吸法测量最大和标准代谢率:学生实验室对水生呼吸器中有氧代谢范围和环境缺氧的调查

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摘要

Metabolic rate is one of the most widely measured physiological traits in animals and may be influenced by both endogenous (e.g. body mass) and exogenous factors (e.g. oxygen availability and temperature). Standard metabolic rate (SMR) and maximum metabolic rate (MMR) are two fundamental physiological variables providing the floor and ceiling in aerobic energy metabolism. The total amount of energy available between these two variables constitutes the aerobic metabolic scope (AMS). A laboratory exercise aimed at an undergraduate level physiology class, which details the appropriate data acquisition methods and calculations to measure oxygen consumption rates in rainbow trout Oncorhynchus mykiss, is presented here. Specifically, the teaching exercise employs intermittent flow respirometry to measure SMR and MMR, derives AMS from the measurements and demonstrates how AMS is affected by environmental oxygen. Students' results typically reveal a decline in AMS in response to environmental hypoxia. The same techniques can be applied to investigate the influence of other key factors on metabolic rate (e.g. temperature and body mass). Discussion of the results develops students' understanding of the mechanisms underlying these fundamental physiological traits and the influence of exogenous factors. More generally, the teaching exercise outlines essential laboratory concepts in addition to metabolic rate calculations, data acquisition and unit conversions that enhance competency in quantitative analysis and reasoning. Finally, the described procedures are generally applicable to other fish species or aquatic breathers such as crustaceans (e.g. crayfish) and provide an alternative to using higher (or more derived) animals to investigate questions related to metabolic physiology.
机译:代谢率是动物中测量最广泛的生理特征之一,可能受内源性因素(例如体重)和外源性因素(例如氧气的供应和温度)的影响。标准代谢率(SMR)和最大代谢率(MMR)是两个基本的生理变量,为有氧能量代谢提供了基础。这两个变量之间的可用能量总量构成有氧代谢范围(AMS)。本文介绍了针对本科生生理课的实验室练习,其中详细介绍了测量虹鳟Oncorhynchus mykiss耗氧率的适当数据采集方法和计算。具体而言,该教学练习采用间歇式流量呼吸测定法测量SMR和MMR,从测量结果中得出AMS,并演示环境氧气如何影响AMS。学生的成绩通常表明,由于环境缺氧,AMS下降。可以使用相同的技术来研究其他关键因素对代谢率(例如温度和体重)的影响。对结果的讨论有助于学生理解这些基本生理特征和外源因素的影响的机制。更一般而言,该教学练习除了代谢率计算,数据采集和单位转换外,还概述了基本的实验室概念,以提高定量分析和推理能力。最后,所描述的程序通常适用于其他鱼类或诸如甲壳类(例如小龙虾)的水生呼吸器,并提供了替代方法来使用更高(或更多衍生)的动物来研究与代谢生理相关的问题。

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