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首页> 外文期刊>The Journal of Experimental Biology >VENTILATION AND PULMONARY GAS EXCHANGE DURING EXERCISE IN THE SAVANNAH MONITOR LIZARD (VARANUS EXANTHEMATICUS)
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VENTILATION AND PULMONARY GAS EXCHANGE DURING EXERCISE IN THE SAVANNAH MONITOR LIZARD (VARANUS EXANTHEMATICUS)

机译:运动中的通气和肺气体交换(萨凡纳监控蜥蜴(VARANUS EXANTHEMATICUS))

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摘要

During exercise, pulmonary gas exchange in reptiles was predicted to differ from that in mammals because of their less complex lung structure, which might reduce ventilation-perfusion heterogeneity (V/QL) at the expense of pulmonary diffusion limitation, To investigate this, the multiple inert gas elimination technique was used in six Varanus exanthematicus at rest and during maximal exercise, Trace amounts of six inert gases were infused into the external jugular vein and blood samples were collected from the pulmonary artery and the left atrium, Mixed expired gas samples and ventilatory and metabolic data were acquired. Indices of V/QL heterogeneity, calculated using a 50-compartment model, were low at rest (log standard deviation of perfusion distribution, logSDQ=0.39) and increased significantly with exercise (logSDQ=0.78), Oxygen diffusion limitation was apparent during exercise and was comparable to reported mammalian values. A molecular-mass-dependent limitation, suggesting limited intrapulmonary gas mixing, was evident only at rest, An increase in left atrial P-O2 from 82 mmHg at rest to 96 mmHg during exercise was associated with a corresponding decrease in P-CO2. These data indicate adequacy of pulmonary ventilation and gas exchange for metabolic demands in exercising varanid lizards and suggest that less complex lung are not structures to increased pulmonary diffusion limitation. [References: 28]
机译:在运动过程中,爬行动物的肺气体交换与哺乳动物相比有所不同,因为它们的肺结构较不复杂,这可能会降低通气-灌注异质性(V / QL),但以肺扩散受限为代价。在六种静止和最大程度的运动中,用惰性气体消除技术治疗了六只静脉曲张,将微量的六种惰性气体注入颈外静脉,并从肺动脉和左心房收集血液样本,混合呼出的气体样本和通气并获取代谢数据。使用50室模型计算的V / QL异质性指标在静息时较低(灌注分布的对数标准偏差,logSDQ = 0.39),随运动而显着增加(logSDQ = 0.78),在运动和与报道的哺乳动物价值相当。仅在静止时才出现分子质量依赖的局限性,表明肺内气体混合受限。运动时左心房P-O2从静止时的82 mmHg增加到运动时的96 mmHg与P-CO2的相应降低有关。这些数据表明,在锻炼varanid蜥蜴时,进行新陈代谢所需的肺通气和气体交换是足够的,并表明复杂程度较低的肺不是增加肺扩散限制的结构。 [参考:28]

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