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首页> 外文期刊>American Journal of Physiology >Helium inhalation enhances vasodilator effect of inhaled nitric oxide on pulmonary vessels in hypoxic dogs.
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Helium inhalation enhances vasodilator effect of inhaled nitric oxide on pulmonary vessels in hypoxic dogs.

机译:吸入氦气可增强吸入一氧化氮对缺氧犬肺血管的血管舒张作用。

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There are theoretical and experimental indications that the presence of He as a balance gas markedly increase the diffusion velocity of other gases contained in a gas mixture. We allowed dogs with pulmonary vasoconstriction induced by hypoxia to inhale a mixture of 5 parts per million (ppm) of nitric oxide (NO) and O(2) balanced with He (NO in He) instead of N(2) (NO in N(2)). The dilating effect of NO in He and NO in N(2) on the pulmonary artery was evaluated by determining conventional pulmonary hemodynamic parameters, mean pulmonary artery (PA) pressure (MPAP), and pulmonary vascular resistance indexed to body surface area (PVRI), pulmonary impedance (Z), and the recently developed hemodynamic index, time-corrected wave intensity (WI). The main findings in this study were as follows: 1) hypoxia increased MPAP, PVRI, Z at 0 Hz (Z(0)), Z at the first harmonics, characteristic impedance (Z(c)), the reflection coefficient (Gamma), and the first peak of WI; 2) NO in N(2) reduced Z(0) and Gamma; and 3) NOin He reduced the first peak of WI and reduced Z(0) and Gamma more than NO in N(2). The enhanced vasodilatory effect of NO in He might be associated with facilitated diffusion of NO diluted in the gas mixture with He. In conclusion, increased efficacy of NO in He offers the possibility to reduce the inhaled NO concentration.
机译:有理论和实验表明,作为平衡气体的氦气的存在显着提高了混合气体中所含其他气体的扩散速度。我们允许由缺氧引起的肺血管收缩的狗吸入百万分之5的一氧化氮(NO)和O(2)与He(He为NO)而不是N(2)(N为NO (2))。通过确定常规肺血流动力学参数,平均肺动脉(PA)压力(MPAP)和以体表面积计的肺血管阻力(PVRI)来评估He中的NO和N(2)中的NO对肺动脉的扩张作用,肺阻抗(Z)以及最近开发的血液动力学指数,时间校正波强度(WI)。这项研究的主要发现如下:1)低氧增加了MPAP,PVRI,0 Hz时的Z(Z(0)),一次谐波时的Z,特征阻抗(Z(c)),反射系数(Gamma) ,以及WI的第一个峰值; 2)N(2)中的NO还原Z(0)和Gamma; 3)NOin He降低了WI的第一个峰,比N(2)中的NO降低了Z(0)和Gamma值。 NO在He中增强的血管舒张作用可能与稀释在与He的气体混合物中的NO的扩散有关。总而言之,NO在He中的功效增强为降低吸入NO浓度提供了可能。

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