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Deposition of bronchiole-originated droplets in the lower airways during exhalation

机译:在呼气期间沉积较低气道中的支气管起源液滴

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Recent studies have shown that small expired droplets that contain pathogens may play a significant role in the transmission of respiratory diseases. However, there is little data on the generation of droplets from the bronchioles and their deposition in the lower airways during exhalation. We apply a computational fluid dynamics method to study expiratory air flow in a truncated model of the adult lower airways. Assumptions are made to evaluate the transport and deposition of droplets along the airway as these droplets are released in various regions in the conducting airways during exhalation. We find that large droplets (i.e., >5 mu m) generated from the bronchioles are very likely to be blocked by the lower airways, whereas those in the submicron range (i.e., <1 mu m) easily survive the conducting tracts and are likely to be exhaled. The locations at which large droplets from the bronchioles are deposited are limited to the terminal regions, which means that these droplets are unlikely to be released again via possible aerosolization due to the shear force on the airway walls. The evidence from the computational fluid dynamics simulation suggests that particle size plays an important role in virus transmission and disease diagnosis.
机译:最近的研究表明,含有病原体的小过期液滴可能在呼吸系统疾病的传播中起着重要作用。然而,在呼气期间,在支气管中的液滴产生液滴的几乎没有数据,并且在呼气期间在下部气道中的沉积。我们应用计算流体动力学方法来研究成人下气道的截短模型中的呼气空气流动。由于这些液滴在呼气期间在导电气道中的各个区域中释放,因此使假设评估沿着气道的液滴的运输和沉积。我们发现从支气管生成的大液滴(即,>5μm)非常可能被下呼吸道阻挡,而亚微米范围(即,<1μm)中的那些容易存活导电束并且很可能被呼出。沉积来自支气管的大液滴的位置限于终端区域,这意味着由于气道壁上的剪切力,这些液滴不太可能通过可能的雾化再次释放。来自计算流体动力学模拟的证据表明,粒度在病毒传播和疾病诊断中起重要作用。

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