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鸸鹋在常氧和低氧运动期间的通气-灌注不均

Ventilation-perfusion inequality during normoxic and hypoxic exercise in the emu.

作者信息

Schmitt P M, Powell F L, Hopkins S R

机构信息

Department of Medicine, University of California, San Diego, La Jolla 92093-0623, USA.

出版信息

J Appl Physiol (1985). 2002 Dec;93(6):1980-6. doi: 10.1152/japplphysiol.01108.2001. Epub 2002 Aug 16.

Abstract

Many avian species exhibit an extraordinary ability to exercise under hypoxic condition compared with mammals, and more efficient pulmonary O(2) transport has been hypothesized to contribute to this avian advantage. We studied six emus (Dromaius novaehollandaie, 4-6 mo old, 25-40 kg) at rest and during treadmill exercise in normoxia and hypoxia (inspired O(2) fraction approximately 0.13). The multiple inert gas elimination technique was used to measure ventilation-perfusion (V/Q) distribution of the lung and calculate cardiac output and parabronchial ventilation. In both normoxia and hypoxia, exercise increased arterial Po(2) and decreased arterial Pco(2), reflecting hyperventilation, whereas pH remained unchanged. The V/Q distribution was unimodal, with a log standard deviation of perfusion distribution = 0.60 +/- 0.06 at rest; this did not change significantly with either exercise or hypoxia. Intrapulmonary shunt was <1% of the cardiac output in all conditions. CO(2) elimination was enhanced by hypoxia and exercise, but O(2) exchange was not affected by exercise in normoxia or hypoxia. The stability of V/Q matching under conditions of hypoxia and exercise may be advantageous for birds flying at altitude.

摘要

与哺乳动物相比,许多鸟类物种在低氧条件下具有非凡的运动能力,并且据推测更高效的肺氧运输有助于这种鸟类优势。我们研究了6只鸸鹋(新荷兰鸸鹋,4至6月龄,25至40千克),分别处于静息状态以及在常氧和低氧(吸入氧分数约为0.13)条件下跑步机运动期间的情况。采用多惰性气体排除技术测量肺的通气-灌注(V/Q)分布,并计算心输出量和副支气管通气量。在常氧和低氧条件下,运动均使动脉血氧分压升高,动脉血二氧化碳分压降低,反映出过度通气,而pH值保持不变。V/Q分布呈单峰型,静息时灌注分布的对数标准差 = 0.60±0.06;运动或低氧均未使其发生显著变化。在所有情况下,肺内分流均小于心输出量的1%。低氧和运动增强了二氧化碳的排出,但常氧或低氧条件下运动均未影响氧交换。在低氧和运动条件下V/Q匹配的稳定性可能对高空飞行的鸟类有利。

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