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Experimental tracking and numerical mapping of novel coronavirus micro-droplet deposition through nasal inhalation in the human respiratory system

机译:一种通过人呼吸系统鼻吸入的新型冠状病毒微液滴沉积的实验跟踪和数值映射

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摘要

It is essential to study the viral droplet's uptake in the human respiratory system to better control, prevent, and treat diseases. Micro-droplets can easily pass through ordinary respiratory masks. Therefore, the SARS-COV-2 transmit easily in conversation with a regular mask with 'silent spreaders' in the most physiological way of breathing through the nose, indoor and at rest condition. The results showed that the amount of deposited micro-droplets in the olfactory epithelium area is low. Also, due to receptors and long droplet residence time in this region, the possibility of absorption increases in the cribriform plate. This phenomenon eventually could lead to brain lesion damage and, in some cases, leads to stroke. In all inlet flow rates lower than 30 L/min inlet boundary conditions, the average percentage of viral contamination for upper respiratory tract is always less than 50% and more than 50% for the lungs. At 6L/min and 15L/min flow rates, the average percentage of lung contamination increases to more than 87%, which due to the presence of the Coronavirus receptor in the lungs, the involvement of the lungs increases significantly. This study's other achievements include the inverse relationship between droplets deposition efficiency in some parts of the upper airway, which have the most deformation in the tract. Also, the increased deformities per minute applied to the trachea and nasal cavity, which is 1.5 times more than usual, could lead to chest and head bothers.
机译:必须研究人类呼吸系统中的病毒液滴摄取,以更好地控制,预防和治疗疾病。微液滴可以容易地通过普通的呼吸面具。因此,SARS-COV-2在与常规面具的谈话中轻松地传递,以鼻子,室内和休息条件的最具生理方式的常规面具。结果表明,嗅性上皮区域中沉积的微液滴量低。而且,由于该区域中的受体和长液滴停留时间,可吸收的可能性增加了CRIBRIFICLIFICLE。这种现象最终可能导致脑病变损伤,在某些情况下,导致中风。在所有入口流速低于30升/最小入口边界条件下,对上呼吸道的病毒污染的平均百分比总是小于肺部的50%且超过50%。在6L / min和15L / min流速下,肺污染的平均百分比增加到87%以上,这是由于肺中冠状病毒受体的存在,肺部的累及显着增加。该研究的其他成就包括上呼吸道某些部分在上部气道中的液滴沉积效率之间的反相关系,这在道路中具有最变形。此外,施加到气管和鼻腔的每分钟的畸形增加,这比往常多1.5倍,可能导致胸部和头部困扰。

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