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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Cardiorespiratory performance during prolonged swimming tests with salmonids: a perspective on temperature effects and potential analytical pitfalls
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Cardiorespiratory performance during prolonged swimming tests with salmonids: a perspective on temperature effects and potential analytical pitfalls

机译:鲑鱼长时间游泳测试期间的心肺功能:对温度影响和潜在分析陷阱的观点

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A prolonged swimming trial is the most common approach in studying steady-state changes in oxygen uptake, cardiac output and tissue oxygen extraction as a function of swimming speed in salmonids. The data generated by these sorts of studies are used here to support the idea that a maximum oxygen uptake is reached during a critical swimming speed test. Maximum oxygen uptake has a temperature optimum. Potential explanations are advanced to explain why maximum aerobic performance falls off at high temperature. The valuable information provided by critical swimming tests can be confounded by non-steady-state swimming behaviours, which typically occur with increasing frequency as salmonids approach fatigue. Two major concerns are noted. Foremost, measurements of oxygen uptake during swimming can considerably underestimate the true cost of transport near critical swimming speed, apparently in a temperature-dependent manner. Second, based on a comparison with voluntary swimming ascents in a raceway, forced swimming trials in a swim tunnel respirometer may underestimate critical swimming speed, possibly because fish in a swim tunnel respirometer are unable to sustain a ground speed.
机译:长时间的游泳试验是研究鲑鱼中摄氧量,心输出量和组织氧提取的稳态变化与游泳速度的函数关系的最常用方法。这些研究产生的数据在这里用于支持在临界游泳速度测试期间达到最大摄氧量的想法。最大摄氧量具有最佳温度。进行了潜在的解释以解释为什么高温下最大的有氧运动能力下降。关键游泳测试提供的有价值的信息可能会与非稳态游泳行为混淆,非稳态游泳行为通常随着鲑鱼趋近疲劳而越来越频繁地出现。指出了两个主要问题。最重要的是,在游泳过程中对氧气吸收的测量结果可能会大大低估接近临界游泳速度时的运输成本,这显然是取决于温度的。其次,根据与跑道上自愿游泳上升的比较,游泳隧道呼吸计中的强制游泳试验可能会低估临界游泳速度,这可能是因为游泳隧道呼吸计中的鱼无法维持地面速度。

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