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CYCLIC BREATHING SIMULATIONS: PRESSURE OUTLET BOUNDARY CONDITIONS COUPLED WITH RESISTANCE COMPLIANCE

机译:循环呼吸模拟:压力出口边界条件与阻力和顺应性耦合

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A patient-specific non-uniform pressure outlet boundary condition was developed and used in unsteady simulations of cyclic breathing in a large-scale model of the lung airway from the oronasal opening to the terminal bronchioles. The computational domain is a reduced-geometry model, in which some airway branches in each generation were truncated, and only selected paths were retained to the terminal generation. To characterize pressure change through airway tree extending from the truncated outlets to pulmonary zone, virtual airways represented by extended volume mesh zones were constructed in order to apply a zero-dimensional airway resistance model. The airway resistances were prescribed based on a precursor steady simulation under constant ventilation condition. The virtual airways accommodate the use of patient-specific alveolar pressure conditions. Furthermore, the time-dependent alveolar pressure profile was composed with the physiologically accurate pleural pressure predicted by the whole-body simulation software HumMod, and the transpulmonary pressure evaluated based on lung compliance and local air volume change. To investigate airway flow patterns of healthy and diseased lungs, unsteady breathing simulations were conducted with varying lung compliances accounting for healthy lungs, and lungs with emphysema or interstitial fibrosis. Results show that the simulations using this patient-specific pressure boundary condition are capable of reproducing physiologically realistic flow patterns corresponding to abnormal pulmonary compliance in diseased lungs, such as the hyperventilation in lungs with emphysema, and the demand of more mechanic work for breathing in lungs with fibrosis.
机译:开发了患者特定的非均匀压力出口边界条件,并将其用于从口鼻孔开口到末端细支气管的大型肺气道模型的循环呼吸的不稳定模拟中。计算域是一个简化的几何模型,其中每个世代中的一些气道分支被截断,只有选定的路径保留到终端世代。为了表征通过从截断的出口延伸到肺区的气道树的压力变化,构建了以扩展体积网格区域为代表的虚拟气道,以应用零维气道阻力模型。气道阻力是根据恒定通风条件下的前驱稳定模拟规定的。虚拟气道可适应患者特定的肺泡压力状况。此外,随时间变化的肺泡压力曲线由全身模拟软件HumMod预测的生理准确的胸膜压力组成,并根据肺顺应性和局部空气量变化评估经肺压。为了研究健康和患病肺的气道流动模式,进行了不稳定呼吸模拟,其中考虑到了健康肺以及患有肺气肿或间质纤维化的肺的不同肺顺应性。结果表明,使用此患者特定压力边界条件进行的模拟能够再现与患病肺部异常肺顺应性相对应的生理现实流动模式,例如患有肺气肿的肺部过度换气以及对肺部呼吸进行更多机械工作的需求纤维化。

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