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Computational Fluid Dynamics Modeling of Respiratory Airflow in Tracheobronchial Airways of Infant Child and Adult

机译:婴幼儿气管支气管呼吸气流的计算流体动力学建模

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摘要

During human growth and development from infancy to adulthood, dramatic changes occur in the respiratory system. It is important to understand respiratory airflow in different age groups in age-specific treatment of respiratory disorders. This study numerically investigated the age-related effects on inspiratory and expiratory airflow dynamics in four-generation lung airway models under normal breathing conditions. Tracheobronchial airway models of infant (6 month old), child (5 years old), and adult (25 years old) from sixth to ninth generations were constructed for the study. Computational fluid dynamics (CFD) was used to solve the equations governing the airflow. Results of this study indicate that as age increases, airflow velocity, pressure, and wall shear stress decrease for both inspiration and expiration in this particular subregion of the respiratory tract. During inspiration, the splitting of velocity streamlines at bifurcations increases with age. The opposite situation merging happens during expiration, and it also increases with age. The level of splitting and merging of streamlines here reflects the influence of respiratory mechanics in the age groups. The computational models provide new information on characteristics and patterns of age-dependent respiratory airflow in the sixth to ninth generations of tracheobronchial airways and can be applied in other generations.
机译:在人类从婴儿期到成年的成长和发展过程中,呼吸系统发生了巨大变化。在特定年龄的呼吸系统疾病治疗中,了解不同年龄组的呼吸气流非常重要。这项研究数值研究在正常呼吸条件下,四代肺气道模型中与年龄有关的对吸气和呼气气流动力学的影响。构建了第六代至第九代的婴儿(6个月大),儿童(5岁)和成人(25岁)的气管支气管气道模型。计算流体动力学(CFD)用于求解控制气流的方程。这项研究的结果表明,随着年龄的增长,在这个呼吸道的特定子区域中,吸气和呼气的气流速度,压力和壁切应力都会降低。在吸气过程中,分叉处的速度流线分裂随年龄增长而增加。相反的情况合并在到期时发生,并且也随着年龄的增长而增加。流线的拆分和合并水平反映了年龄段中呼吸力学的影响。该计算模型为气管支气管气道第六至第九代中与年龄有关的呼吸气流的特征和模式提供了新的信息,并且可以在其他几代中应用。

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