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一种新型高压游泳呼吸代谢测量仪可用于鱼类呼吸代谢研究中模拟不同的游泳深度。

A novel hyperbaric swimming respirometer allows the simulation of varying swimming depths in fish respirometry studies.

机构信息

Thünen Institute of Fisheries Ecology, Herwigstraße 31, 27572 Bremerhaven, Germany.

Thünen Institute of Fisheries Ecology, Herwigstraße 31, 27572 Bremerhaven, Germany.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2022 Feb;264:111117. doi: 10.1016/j.cbpa.2021.111117. Epub 2021 Nov 15.

Abstract

The understanding of swimming physiology and knowledge on the metabolic costs of swimming are important for assessing effects of environmental factors on migratory behavior. Swim tunnels are the most common experimental setups for measuring swimming performance and oxygen uptake rates in fishes; however, few can realistically simulate depth and the changes in hydrostatic pressure that many fishes experience, e.g. during diel vertical migrations. Here, we present a new hyperbaric swimming respirometer (HSR) that can simulate depths of up to 80 m. The system consists of three separate, identical swimming tunnels, each with a volume of 205 L, a control board and a storage tank with water treatment. The swimming chamber of each tunnel has a length of 1.40 m and a diameter of 20 cm. The HSR uses the principle of intermittent-flow respirometry and has here been tested with female European eels (Anguilla anguilla). Various pressure, temperature and flow velocity profiles can be programmed, and the effect on metabolic activity and oxygen consumption can be assessed. Thus, the HSR provides opportunities to study the physiology of fish during swimming in a simulated depth range that corresponds to many inland, coastal and shelf waters.

摘要

对游泳生理学的理解和对游泳代谢成本的认识,对于评估环境因素对洄游行为的影响很重要。游泳隧道是测量鱼类游泳性能和耗氧率的最常用的实验装置;然而,很少有装置能逼真地模拟许多鱼类在日常生活中经历的深度和静水压力的变化,例如在昼夜垂直迁移期间。在这里,我们提出了一种新的高压游泳呼吸测量仪 (HSR),它可以模拟高达 80 米的深度。该系统由三个独立的、相同的游泳隧道组成,每个隧道的体积为 205 升,一个控制板和一个带有水处理的储水箱。每个隧道的游泳室长 1.40 米,直径 20 厘米。HSR 使用间歇流动呼吸测量法的原理,这里已经用雌性欧鳗(Anguilla anguilla)进行了测试。可以编程各种压力、温度和流速曲线,并评估其对代谢活动和耗氧量的影响。因此,HSR 为研究鱼类在模拟深度范围内游泳时的生理学提供了机会,该模拟深度范围与许多内陆、沿海和大陆架水域相对应。

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