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Airflow velocities in the airways during expiration on different end-expiratory lung volumes: Computational study

机译:不同呼气末肺体积呼气期间气道中的气流速度:计算研究

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We used our computational model of the respiratory system which features non-linear variation of airway dimensions and airway-generation-based structure to show airflow velocities (cm/sec) during natural slow expiration on different end-expiratory lung volumes. Expiratory airflow rates at the mouth can be easily measured using a flow meter. However, because there is no practical non-invasive method that is currently available to measure airflow velocity in the airways, the airflow velocities in airway generations 0~16 were studied using the computational model. An airflow velocity is given by an airflow rate (ml/sec)+a cross sectional area (cm2). The cross sectional areas vary depending on inflation and deflation of a lung during respiration, and thus, knowing expiratory airflow rates at the mouth does not go far along the way to find out airflow velocities in the airways. In this study, we first predicted variation of expiratory airflow rates on six different end-expiratory lung volumes using a concept of a time constant, a product of lung compliance and airway resistance, and computational simulation. Then airflow velocities during expiration on the six end-expiratory lung volumes were computed and compared at the conducting airways, airway generations 0~16
机译:我们使用了呼吸系统的计算模型,该模型具有气道尺寸和气道生成结构的非线性变化,以显示在不同的呼气末肺量自然缓慢呼气过程中的气流速度(cm / sec)。可以使用流量计轻松测量口中的呼气流速。然而,由于目前没有实用的非侵入性方法可用于测量气道中的气流速度,因此使用计算模型研究了0至16代气道中的气流速度。气流速度由气流速率(ml / sec)+横截面积(cm 2 )给出。横截面积根据呼吸过程中肺部的充气和放气而变化,因此,了解口中的呼气气流速率并不能找出呼吸道中的气流速度。在这项研究中,我们首先使用时间常数,肺顺应性和气道阻力的乘积以及计算模拟的概念,预测了六种不同的呼气末肺体积上的呼气流速变化。然后计算呼气结束时六个呼气末肺体积上的气流速度,并在传导气道上进行比较,气道生成量为0〜16

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