Dawson C A, Grimm D J, Linehan J H
J Appl Physiol Respir Environ Exerc Physiol. 1978 Apr;44(4):493-8. doi: 10.1152/jappl.1978.44.4.493.
We have examined the influence of hypoxia on the longitudinal distribution of vascular resistance and intravascular pressure in isolated cat lungs using the low-viscosity bolus technique. Hypoxia increased total vascular resistance, decreased total lung blood volume, and moved the maximum local resistance downstream away from the main pulmonary artery. The circumference of the main pulmonary artery was increased and the extravascular lung water (double indicator dilution technique) was decreased by hypoxia. Thus, it would appear that distension of the large pulmonary arteries and a decrease in the amount of lung tissue perfused contributed to the change in resistance distribution brought about by hypoxia.
我们使用低粘度团注技术,研究了低氧对离体猫肺血管阻力纵向分布和血管内压力的影响。低氧增加了总血管阻力,减少了肺总血容量,并使最大局部阻力从主肺动脉下游移开。低氧使主肺动脉周长增加,血管外肺水(双指示剂稀释技术)减少。因此,似乎大肺动脉的扩张和灌注肺组织量的减少促成了低氧引起的阻力分布变化。