Svendsen M B S, Bushnell P G, Steffensen J F
Marine Biological Section, Department of Biology, University of Copenhagen, Strandpromenaden 5, DK-3000, Helsingør, Denmark.
Department of Biological Sciences, Indiana University South Bend, South Bend, IN, 46634, U.S.A.
J Fish Biol. 2016 Jan;88(1):26-50. doi: 10.1111/jfb.12797. Epub 2015 Nov 24.
Intermittent-flow respirometry is an experimental protocol for measuring oxygen consumption in aquatic organisms that utilizes the best features of closed (stop-flow) and flow-through respirometry while eliminating (or at least reducing) some of their inherent problems. By interspersing short periods of closed-chamber oxygen consumption measurements with regular flush periods, accurate oxygen uptake rate measurements can be made without the accumulation of waste products, particularly carbon dioxide, which may confound results. Automating the procedure with easily available hardware and software further reduces error by allowing many measurements to be made over long periods thereby minimizing animal stress due to acclimation issues. This paper describes some of the fundamental principles that need to be considered when designing and carrying out automated intermittent-flow respirometry (e.g. chamber size, flush rate, flush time, chamber mixing, measurement periods and temperature control). Finally, recent advances in oxygen probe technology and open source automation software will be discussed in the context of assembling relatively low cost and reliable measurement systems.
间歇流呼吸测定法是一种用于测量水生生物耗氧量的实验方案,它利用了密闭(停流)呼吸测定法和流通式呼吸测定法的最佳特性,同时消除(或至少减少)了它们一些固有的问题。通过将短时间的密闭腔室耗氧量测量与定期冲洗阶段穿插进行,可以在不积累废物产物(特别是二氧化碳,它可能会混淆结果)的情况下进行准确的氧气摄取率测量。使用易于获得的硬件和软件使该过程自动化,通过长时间进行多次测量进一步减少误差,从而将因适应问题导致的动物应激降至最低。本文描述了在设计和实施自动化间歇流呼吸测定法时需要考虑的一些基本原理(例如腔室大小、冲洗速率、冲洗时间、腔室混合、测量周期和温度控制)。最后,将在组装成本相对较低且可靠的测量系统的背景下讨论氧气探针技术和开源自动化软件的最新进展。