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A Cough Aerosol Simulator for the Study of Disease Transmission by Human Cough-Generated Aerosols

机译:用于研究人类咳嗽产生的气溶胶传播疾病的咳嗽气溶胶模拟器

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摘要

Aerosol particles expelled during human coughs are a potential pathway for infectious disease transmission. However, the importance of airborne transmission is unclear for many diseases. To better understand the role of cough aerosol particles in the spread of disease and the efficacy of different types of protective measures, we constructed a cough aerosol simulator that produces a humanlike cough in a controlled environment. The simulated cough has a 4.2 l volume and is based on coughs recorded from influenza patients. In one configuration, the simulator produces a cough aerosol containing particles from 0.1 to 100 µm in diameter with a volume median diameter (VMD) of 8.5 µm and a geometric standard deviation (GSD) of 2.9. In a second configuration, the cough aerosol has a size range of 0.1–30 µm, a VMD of 3.4 µm, and a GSD of 2.3. The total aerosol volume expelled during each cough is 68 µl. By generating a controlled and reproducible artificial cough, the simulator allows us to test different ventilation, disinfection, and personal protection scenarios. The system can be used with live pathogens, including influenza virus, which allows isolation precautions used in the healthcare field to be tested without risk of exposure for workers or patients. The information gained from tests with the simulator will help to better understand the transmission of infectious diseases, develop improved techniques for infection control, and improve safety for healthcare workers and patients.
机译:在人类咳嗽期间排出的气溶胶颗粒是传染病传播的潜在途径。但是,对于许多疾病,空中传播的重要性尚不清楚。为了更好地了解咳嗽气雾剂颗粒在疾病传播中的作用以及不同类型的防护措施的功效,我们构建了咳嗽气雾剂模拟器,该模拟器在受控环境下可产生类人咳嗽。模拟咳嗽的容量为4.2升,基于流感患者记录的咳嗽。在一种配置中,模拟器可产生咳嗽气雾剂,其中含有直径为0.1至100 µm的颗粒,体积中值直径(VMD)为8.5 µm,几何标准偏差(GSD)为2.9。在第二种配置中,咳嗽气雾剂的粒径范围为0.1–30 µm,VMD为3.4 µm,GSD为2.3。每次咳嗽期间排出的总气溶胶量为68 µl。通过产生可控制且可复制的人工咳嗽,模拟器使我们能够测试不同的通风,消毒和个人防护方案。该系统可与包括流感病毒在内的活病原体一起使用,从而可以测试医疗保健领域中使用的隔离措施,而不会为工人或患者暴露。从模拟器进行的测试中获得的信息将有助于更好地理解传染病的传播,开发用于感染控制的改进技术以及提高医护人员和患者的安全性。

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