北象海豹在实验室潜水时的心率和耗氧量。

P M Webb, R D Andrews, D P Costa, B J Le Boeuf
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引用次数: 63

摘要

许多技术被用于测量潜水海洋哺乳动物的代谢和心血管变化。每种方法都有其优点,但当应用于密封时,这些方法也有缺点。本研究的目的是研究在没有强迫运动状态变化的情况下,幼小的北方象海豹在潜水时的心率和代谢反应,其次,研究心率是否可以作为该物种代谢率的指标。6只海豹被允许在一个代谢室里自由潜水,同时测量心率和耗氧量。在每个潜水周期(潜水和水面间隔)中,海豹平均有74%的时间在水下。平均潜水时间为6.43+/-0.6 (SD) min。潜水期间的平均耗氧量为3.32+/-0.4 mL O2 min-1 kg-1,比基线值下降了约26%。在每个潜水周期中,氧气消耗与潜水时间百分比呈反比关系。随着潜水时间的增加,表面间隙的总耗氧量增加,而表面间隙本身的持续时间没有变化,这表明密封改变了氧气吸收的速度,而不是在表面停留的时间。潜水时的平均心率为每分钟34.5±6.2次,比静息值低36%。平均潜水心率与潜水时间、潜水时间百分比和耗氧量无关。平均表间期心率为66.6+/-11.1次/ min-1,与耗氧量无关。在整个潜水周期中,所有海豹的平均心率都随着氧气消耗的增加而增加,但只有两只海豹的心率与氧气消耗有显著的关系,这使人们对心率作为该物种代谢率指标的有效性产生了一些怀疑。虽然提供了关于北象海豹潜水时心率和耗氧量变化的重要信息,但要全面了解这些动物的潜水代谢率,需要将各种方法与自由生活动物的数据结合起来使用。
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Heart rate and oxygen consumption of northern elephant seals during diving in the laboratory.

Many techniques have been employed to measure metabolic and cardiovascular changes in diving marine mammals. Each of these methods has its advantages, but the methods also have drawbacks when applied to phocid seals. The aim of this study was to investigate heart rate and metabolic responses to diving in juvenile northern elephant seals that are not associated with forced changes in exercise state, and, secondarily, to investigate whether heart rate could be used as an indicator of metabolic rate in this species. Six seals were allowed to dive freely in a metabolic chamber while simultaneous measurements of heart rate and oxygen consumption were made. Within each dive cycle (dive and surface interval), the seals spent an average of 74% of the time submerged. Mean dive duration was 6.43+/-0.6 (SD) min. Mean oxygen consumption during diving was 3.32+/-0.4 mL O2 min-1 kg-1, a decrease of approximately 26% from baseline values. An inverse relationship was observed between oxygen consumption and the percentage of time spent submerged in each dive cycle. The total amount of oxygen consumed during the surface interval increased with increasing dive duration, while the duration of the surface interval itself did not change, indicating that seals alter the rate of O2 uptake rather than the time spent at the surface. Mean heart rate during diving was 34.5+/-6.2 beats min-1, 36% lower than resting values. Mean diving heart rate was independent of dive duration, percent time submerged, and oxygen consumption. Mean surface interval heart rate was 66.6+/-11.1 beats min-1 and was not correlated with oxygen consumption. Average heart rate over the entire dive cycle increased with increasing oxygen consumption in all of the seals, but there was only a significant relationship in two seals, which casts some doubt on the usefulness of heart rate as an indicator of metabolic rate in this species. While providing important information on the changes in heart rate and oxygen consumption during diving in northern elephant seals, a complete understanding of the diving metabolic rate of these animals will require a combination of approaches that can be used in concert with data on freely living animals.

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