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首页> 外文期刊>The Journal of Experimental Biology >Patterns of respiration in diving penguins: is the last gasp an inspired tactic?
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Patterns of respiration in diving penguins: is the last gasp an inspired tactic?

机译:潜水企鹅的呼吸方式:最后一次喘息是一种启发性的战术吗?

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Humboldt penguins Spheniscus humboldti in captivity and free-living Magellanic penguins S. magellanicus were fitted with loggers to determine beak angles during breathing. The Humboldt penguins were also fitted with masks for determining rates of air flow during breathing. During periods of higher gas exchange requirement, Humboldt penguins opened their beaks during inspiration, where tidal volume was linearly correlated with both change in beak angle and maximum beak angle, closed them slightly during the final stages of inspiration and finally closed them during expiration. Substantial differences were apparent between individuals. Contrary to the condition proposed for most birds, our data suggest that expiration is passive during periods of high respiratory tidal volumes, and that the increased resistance of the respiratory pathway serves to slow air flow so as to maximize gas exchange in the lungs. During foraging, Magellanic penguins at the surface between dives showed similar breathing patterns but maximum beak angles were much higher and breath cycle time shorter, as would be expected for animals attempting to maximize gas exchange. Both maximum beak angle per breath and breath frequency changed systematically over the surface pause; both were initially high, then decreased to a low before rising again to a maximum just before diving. Based on known changes in tidal volume with beak angle derived from Humboldt penguins, a simple model is proposed to examine rates of gas exchange over the surface pause. This indicates that the observed patterns do not maximize the rate of transfer of oxygen over the whole of the surface pause but are rather concerned with an initial rapid accumulation of oxygen in the tissues followed by effective carbon dioxide release. [References: 48]
机译:人工饲养的洪堡企鹅Spheniscus humboldti和自由生活的麦哲伦企鹅S. magellanicus装有记录仪,以确定呼吸期间的喙角。洪堡企鹅还配有口罩,用于确定呼吸过程中的空气流速。在较高的气体交换需求期间,洪堡企鹅在吸气期间打开喙,在此期间,潮气量与喙角和最大喙角的变化均呈线性关系,在吸气的最后阶段将其略微关闭,并在到期时将其关闭。个体之间存在明显差异。与大多数鸟类提出的条件相反,我们的数据表明,在高潮气量期间,呼气是被动的,并且增加的呼吸路径阻力会减慢空气流动,从而最大程度地增加肺中的气体交换。在觅食过程中,两次潜水之间的麦哲伦企鹅表现出相似的呼吸模式,但最大喙角更高,呼吸循环时间更短,这是尝试使气体交换最大化的动物所期望的。每次呼吸的最大喙角和呼吸频率都在表面暂停期间系统地改变;两者最初都是高点,然后下降到低点,然后在潜水前再次上升到最高点。基于洪堡企鹅派生的喙角随潮气量的已知变化,提出了一个简单的模型来检查表层停顿过程中的气体交换速率。这表明所观察到的模式并未使整个表面暂停期间氧气的转移速率最大化,而是与组织中最初的氧气快速快速积累和有效的二氧化碳释放有关。 [参考:48]

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