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Buccal jet streaming and dead space determination in the South American lungfish, Lepidosiren paradoxa

机译:南美洲肺鱼,鳞翅目肺鱼肺鱼的海盗射流和死空间测定

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The "jet stream" model predicts an expired flow within the dorsal part of the buccal cavity with small air mixing during buccal pump ventilation, and has been suggested for some anuran amphibians but no other species of air breathing animal using a buccal force pump has been investigated. The presence of a two-stroke buccal pump in lungfish, i.e. expiration followed by inspiration, was described previously, but no quantitative data are available for the dead-space of their respiratory system and neither a detailed description of airflow throughout a breathing cycle. The present study aimed to assess the degree of mixing of fresh air and expired gas during the breathing cycle of Lepidosiren paradoxa and to verify the possible presence of a jet stream during expiration in this species. To do so, simultaneous measurements of buccal pressure and ventilatory airflows were carried out. Buccal and lung gases (PCO2 and PO2) were also measured. The effective ventilation was calculated and the dead space estimated using Bohr equations. The results confirmed that the two-stroke buccal pump is present in lungfish, as it is in anuran amphibians. The present approaches were coherent with a small dead space, with a very small buccal-lung PCO2 difference. In the South American lungfish the dead space (VD) as a percentage of tidal volume (V-T) (V/V-T) ranged from 4.1 to 12.5%. Our data support the presence of a jet stream and indicate a small degree of air mixing in the buccal cavity. Comparisons with the literature indicate that these data are similar to previous data reported for the toad Rhinella schneideri.
机译:“喷射流”模型预测颊腔的背部部分内的过期流动,在口腔泵通风期间具有小空气混合,并且已经提出了一些Anuran两栖动物,但没有使用颊泵泵的其他空气呼吸动物调查。先前描述了在肺鱼中存在双卒中颊泵,即呼气,但是由灵感来说,但没有定量数据可用于其呼吸系统的死区,并且既没有呼吸循环整个气流的详细描述。本研究旨在评估新鲜空气和过期气体的呼吸循环期间新鲜空气和过期气体的变化程度,并核实在该物种的到期期间验证喷射流的可能存在。为此,进行海盗压力和通风气流的同时测量。还测量了口腔和肺气体(PCO2和PO2)。计算有效通气,并使用BOHR方程估计的死区。结果证实,肺鱼中存在双行程口腔泵,因为它在阳离子两栖动物中。本方法与小型死区相干,具有非常小的颊肺PCO2差异。在南美陆龙鱼中,死区(VD)作为潮气量(V-T)(V / V-T)的百分比范围为4.1至12.5%。我们的数据支持存在喷射流,并在颊腔中表示少量的空气混合。与文献的比较表明,这些数据类似于蟾蜍犀牛施奈德里的先前数据。

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