首页> 外文期刊>Journal of Biomechanics >The ventilation distribution of helium-oxygen mixtures and the role of inertial losses in the presence of heterogeneous airway obstructions.
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The ventilation distribution of helium-oxygen mixtures and the role of inertial losses in the presence of heterogeneous airway obstructions.

机译:在异质性气道阻塞的情况下,氦氧混合物的通气分布和惯性损失的作用。

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摘要

The regional distribution of inhaled gas within the lung is affected in part by normal variations in airway geometry or by obstructions resulting from disease. In the present work, the effects of heterogeneous airway obstructions on the distribution of air and helium-oxygen were examined using an in vitro model, the two compartments of a dual adult test lung. Breathing helium-oxygen resulted in a consistently more uniform distribution, with the gas volume delivered to a severely obstructed compartment increased by almost 80%. An engineering approach to pipe flow was used to analyze the test lung and was extrapolated to a human lung model to show that the in vitro experimental parameters are relevant to the observed in vivo conditions. The engineering analysis also showed that helium-oxygen can decrease the relative weight of the flow resistance due to obstructions if they are inertial in nature (i.e., density dependent) due to either turbulence or laminar convective losses.
机译:肺内吸入气体的区域分布部分受到气道几何结构正常变化或疾病引起的阻塞的影响。在目前的工作中,使用体外模型,即成年双肺测试的两个隔室,检查了异质气道阻塞对空气和氦氧分布的影响。呼吸中的氦氧导致始终如一的均匀分布,输送到严重阻塞的隔室的气体量增加了近80%。使用工程方法对管道流量进行分析,然后将其外推至人肺模型,以显示体外实验参数与观察到的体内条件相关。工程分析还表明,如果氦氧由于湍流或层流对流损失而本质上是惯性的(即,与密度有关),则由于阻碍物的存在,氦氧可以降低流动阻力的相对重量。

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