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Droplet fate in indoor environments, or can we prevent the spread of infection?

机译:室内环境中的飞沫命运,还是我们可以预防感染的传播?

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摘要

When considering how people are infected and what can be done to prevent the infections, answers from many disciplines are sought: microbiology, epidemiology, medicine, engineering, and physics. There are many pathways to infection spread, and among the most significant from the epidemiological point of view is airborne transport. Microorganisms can become airborne when droplets are generated during speech, coughing, sneezing, vomiting, or atomi-zation of feces during sewage removal. The fate of the droplets is governed by the physical principles of transport, with droplet size being the most important factor affecting their dispersion, deposition on surfaces and determining the survival of microorganisms within the droplets. In addition, physical characteristics of the indoor environment as well as the design and operation of building ventilation systems are of critical importance. Do we understand the mechanisms of infection spread and can we quantify the droplet dynamics under various indoor conditions? Unfortunately no, as this aspect of infection spread has attracted surprisingly little scientific interest. However, investigations of numerous cases in which a large number of people were infected show how critical the physics of microorganism spread can be. This paper reviews the state of knowledge regarding mechanisms of droplet spread and solutions available to minimize the spread and prevent infections.
机译:在考虑人们如何感染以及如何预防感染时,需要寻求许多学科的答案:微生物学,流行病学,医学,工程学和物理学。感染传播的途径有很多,从流行病学的角度来看,最重要的途径是空中传播。当在污水处理过程中说话,咳嗽,打喷嚏,呕吐或粪便烟气化过程中产生水滴时,微生物会传播到空气中。液滴的命运受运输的物理原理支配,液滴的大小是影响其分散,沉积在表面上并确定液滴中微生物存活率的最重要因素。此外,室内环境的物理特性以及建筑物通风系统的设计和操作也至关重要。我们是否了解感染传播的机制,能否量化各种室内条件下的液滴动态?不幸的是没有,因为感染传播的这一方面吸引了很少的科学兴趣。但是,对许多感染大量人的病例进行的调查表明,微生物传播的物理机制至关重要。本文回顾了有关飞沫传播机制的知识状态以及可以最大程度地减少传播并防止感染的解决方案。

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