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首页> 外文期刊>The Journal of Experimental Biology >The influence of locomotion on air-sac pressures in little penguins
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The influence of locomotion on air-sac pressures in little penguins

机译:运动对小企鹅气囊压力的影响

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Air-sac pressures have been reported to oscillate with wing beat in flying magpies and with foot paddling in diving ducks. We sought to determine the impact on air-sac pressure of wing beats during swimming and of the step cycle during walking in little penguins (Eudyptula minor). Fluctuations averaged 0.16 +/- 0.06 kPa in the interclavicular air sacs, but only 0.06 +/- 0.04 kPa in the posterior thoracic sac, generating a small differential pressure between sacs of 0.06 +/- 0.02 kPa (means +/- S.E.M., N=4). These fluctuations occurred at approximately 3 Hz and corresponded to wing beats during swimming, indicated by electromyograms from the pectoralis and supracoracoideus muscles. There was no abdominal muscle activity associated with swimming or exhalation, but the abdominal muscles were active with the step cycle in walking penguins, and oscillations in posterior air-sac pressure (0.08 +/- 0.038 kPa) occurred with steps. We conclude that high-frequency oscillations in differential air-sac pressure enhance access to and utilization of the O-2 stores in the air sacs during a dive.
机译:据报道,在喜mag飞行中,气囊的压力会随着拍子的摆动而跳动,而在潜水鸭子中,脚掌会发生振荡。我们试图确定在小企鹅(Eudyptula minor)游泳过程中拍打的翅膀节拍和步伐周期对步幅对气囊压力的影响。锁骨间气囊的平均起伏为0.16 +/- 0.06 kPa,而胸椎后囊的起伏仅为0.06 +/- 0.04 kPa,在气囊之间产生的压力差很小,为0.06 +/- 0.02 kPa(均值+/- SEM,N = 4)。这些波动以大约3 Hz的频率发生,并对应于游泳时的拍打动作,由胸大肌和胸上膜肌的肌电图表示。没有与游泳或呼气相关的腹肌活动,但是在步行企鹅中腹肌随着步伐周期而活跃,并且后囊压力(0.08 +/- 0.038 kPa)随步幅发生振荡。我们得出的结论是,在潜水期间,气囊压力差中的高频振荡会增强对气囊中O-2存储的访问和利用。

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