首页> 外文期刊>Marine Mammal Science >Reductions in oxygen consumption during dives and estimated submergence limitations of steller sea lions (Eumetopias jubatus).
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Reductions in oxygen consumption during dives and estimated submergence limitations of steller sea lions (Eumetopias jubatus).

机译:潜水过程中氧气消耗的减少以及斯特勒海狮(Eumetopias jubatus)的淹没极限。

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Accurate estimates of diving metabolic rate are central to assessing the energy needs of marine mammals. To circumvent some of the limitations inherent with conducting energy studies in both the wild and captivity, we measured diving oxygen consumption of two trained Steller sea lions (Eumetopias jubatus) in the open ocean. The animals dived to predetermined depths (5-30 m) for controlled periods of time (50-200 s). Rates of oxygen consumption were measured using open-circuit respirometry before and after each dive. Mean resting rates of oxygen consumption prior to the dives were 1.34 ([plus or minus]0.18) and 1.95 ([plus or minus]0.19) liter/min for individual sea lions. Mean rates of oxygen consumption during the dives were 0.71 ([plus or minus]0.24) and 1.10 ([plus or minus]0.39) liter/min, respectively. Overall, rates of oxygen consumption during dives were significantly lower (45% and 41%) than the corresponding rates measured before dives. These results provide the first estimates of diving oxygen consumption rate for Steller sea lions and show that this species can exhibit a marked decrease in oxygen consumption relative to surface rates while submerged. This has important consequences in the evaluation of physiological limitations associated with diving such as dive duration and subsequent interpretations of diving behavior in the wild.
机译:准确估计潜水代谢率对于评估海洋哺乳动物的能量需求至关重要。为了规避在野外和圈养中进行能量研究固有的局限性,我们测量了公海中两只训练有素的斯特勒海狮(Eumetopias jubatus)的潜水耗氧量。动物在受控的时间段(50-200 s)内潜入预定深度(5-30 m)。在每次潜水之前和之后,使用开路呼吸测定法测量耗氧率。潜水之前,单个海狮的平均氧气消耗静息率为1.34(正负0.18)升/分钟。潜水期间的平均耗氧率分别为0.71(正负0.24)升/分钟和1.10(正负0.39)升/分钟。总体而言,潜水过程中的氧气消耗率显着低于潜水之前的相应消耗率(45%和41%)。这些结果提供了斯特勒海狮潜水氧气消耗速率的第一个估计值,并表明该物种在淹没时相对于表面速率可以显示出明显的氧气消耗降低。这在评估与潜水有关的生理局限性方面具有重要意义,例如潜水时间和野外潜水行为的后续解释。

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