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Lung collapse in the diving sea lion: hold the nitrogen and save the oxygen

机译:潜水海狮中的肺塌陷:保持氮气并保存氧气

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摘要

Lung collapse is considered the primary mechanism that limits nitrogen absorption and decreases the risk of decompression sickness in deep-diving marine mammals. Continuous arterial partial pressure of oxygen profiles in a free-diving female California sea lion (Zalophus californianus) revealed that (i) depth of lung collapse was near 225 m as evidenced by abrupt changes in during descent and ascent, (ii) depth of lung collapse was positively related to maximum dive depth, suggesting that the sea lion increased inhaled air volume in deeper dives and (iii) lung collapse at depth preserved a pulmonary oxygen reservoir that supplemented blood oxygen during ascent so that mean end-of-dive arterial was 74 ± 17 mmHg (greater than 85% haemoglobin saturation). Such information is critical to the understanding and the modelling of both nitrogen and oxygen transport in diving marine mammals.
机译:肺塌陷被认为是限制氮吸收并降低深海海洋哺乳动物减压病风险的主要机制。一只自由潜水的雌性加利福尼亚海狮(Zalophus californianus)的氧气剖面连续动脉分压显示(i)下降和上升过程中突然变化证明了肺塌陷的深度接近225 m,(ii)肺深塌陷与最大潜水深度呈正相关,这表明海狮在更深的潜水中增加了吸入的空气量;(iii)深度处的肺塌陷保留了在上升过程中补充血氧的肺氧气库,因此平均潜水终点为74±17 mmHg(大于85%的血红蛋白饱和度)。这些信息对于潜水海洋哺乳动物中氮和氧的运输及其理解和建模至关重要。

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