首页> 外文期刊>Journal of Comparative Physiology B >Changes in partial pressures of respiratory gases during submerged voluntary breath hold across odontocetes: is body mass important?
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Changes in partial pressures of respiratory gases during submerged voluntary breath hold across odontocetes: is body mass important?

机译:在整个水下渗透过程中,呼吸气体分压的变化贯穿整个牙本质:体重重要吗?

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摘要

Odontocetes have an exceptional range in body mass spanning 103 kg across species. Because, size influences oxygen utilization and carbon dioxide production rates in mammals, this lineage likely displays an extraordinary variation in oxygen store management compared to other marine mammal groups. To examine this, we measured changes in the partial pressures of respiratory gases ( $ P_{{{text{O}}_{2} }} $ , $ P_{{{text{CO}}_{2} }} $ ), pH, and lactate in the blood during voluntary, quiescent, submerged breath holds in Pacific white-sided dolphins (Lagenorhynchus obliquidens), bottlenose dolphins (Tursiops truncatus), and a killer whale (Orcinus orca) representing a mass range of 96–3,850 kg. These measurements provided an empirical determination of the effect of body size on the variability in blood biochemistry during breath hold and experimentally determined aerobic dive limits (ADL) within one taxonomic group (odontocetes). For the species in this study, maximum voluntary breath-hold duration was positively correlated with body mass, ranging from 3.5 min in white-sided dolphins to 13.3 min for the killer whale. Variation in breath-hold duration was associated with differences in the rate of change for $ P_{{{text{O}}_{2} }} $ throughout breath hold; $ P_{{{text{O}}_{2} }} $ decreased twice as fast for the two smaller species (−0.6 mmHg O2 min−1) compared to the largest species (−0.3 mmHg O2 min−1). In contrast, the rate of increase in $ P_{{{text{CO}}_{2} }} $ during breath hold was similar across species. These results demonstrate that large body size in odontocetes facilitates increased aerobic breath-hold capacity as mediated by decreased mass-specific metabolic rates (rates of change in $ P_{{{text{O}}_{2} }} $ served as a proxy for oxygen utilization). Indeed the experimentally determined 5 min ADL for bottlenose dolphins was surpassed by the 13.3 min maximum breath hold of the killer whale, which did not end in a rise in lactate. Rather, breath hold ended voluntarily as respiratory gases and pH fell within a narrow range for both large and small species, likely providing cues for ventilation.
机译:齿形目动物的体重范围极广,跨物种达103 。因为大小会影响哺乳动物的氧气利用率和二氧化碳产生率,所以与其他海洋哺乳动物组相比,该血统可能在氧气存储管理方面显示出巨大的差异。为了检验这一点,我们测量了呼吸气体分压($ P _ {{{text {O}} _ {2}}} $,$ P _ {{{text {CO}} _ {2}}} $ ),pH和乳酸在太平洋白边海豚(Lagenorhynchus obliquidens),宽吻海豚(Tursiops truncatus)和虎鲸(Orcinus orca)处于主动,静止,深呼吸时的质量范围为96– 3,850公斤这些测量提供了一个经验值,即在屏气过程中体重对血液生物化学变异性的影响,并通过实验确定了一个分类组(齿形突科)内的有氧潜水极限(ADL)。对于本研究中的物种,最大自愿屏气持续时间与体重呈正相关,范围从白面海豚中的3.5分钟到虎鲸的13.3分钟。屏气持续时间的变化与整个屏气期间$ P _ {{{text {O}} _ {2}}} $的变化率差异有关。 $ P _ {{{text {O}} _ {2}}} $与两个最大物种(-)相比,两个较小物种(-0.6 mmHg O2 min-1 )的下降速度快两倍0.3 mmHg O2 min-1 )。相反,屏气期间$ P _ {{{text {CO}} _ {2}}} $的增加速率在不同物种之间相似。这些结果表明,由于质量特异性代谢率降低(以$ P _ {{{text {O}} _ {2}}} $为单位氧气使用代理)。实际上,通过实验确定的宽吻海豚5分钟的ADL值已超过虎鲸的13.3分钟最大屏息时间,而这并未以乳酸的增加为终点。相反,无论大大小小的物种,呼吸气体和pH值都在狭窄范围内,屏住呼吸会自动终止,这可能为通气提供了提示。

著录项

  • 来源
    《Journal of Comparative Physiology B》 |2012年第2期|p.299-309|共11页
  • 作者单位

    Ecology and Evolutionary Biology Department, Center for Ocean Health, University of California at Santa Cruz, 100 Shaffer Road, Santa Cruz, CA, 95060, USA;

    Ecology and Evolutionary Biology Department, Center for Ocean Health, University of California at Santa Cruz, 100 Shaffer Road, Santa Cruz, CA, 95060, USA;

    John G. Shedd Aquarium, 1200 S. Lake Shore Drive, Chicago, IL, 60605, USA;

    John G. Shedd Aquarium, 1200 S. Lake Shore Drive, Chicago, IL, 60605, USA;

    SeaWorld, 500 SeaWorld Drive, San Diego, CA, 92109, USA;

    Pacific Research Laboratory Inc, El Cajon, CA, 97365, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aerobic dive limit; Blood gas; Blood pH; Plasma lactate; Odontocete; Cetacean;

    机译:有氧潜水极限;气体;血液pH值;等离子乳酸盐;牙本质病;鲸类;

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