Exhaled air dispersion during coughing with and without wearing a surgical or N95 mask.
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TL;DR: N95 mask was more effective than surgical mask in preventing expelled air leakage during coughing but there was still significant sideway leakage.
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Abstract: Objectives: We compared the expelled air dispersion distances during coughing from a human patient simulator (HPS) lying at 45u with and without wearing a surgical mask or N95 mask in a negative pressure isolation room. Methods: Airflow was marked with intrapulmonary smoke. Coughing bouts were generated by short bursts of oxygen flow at 650, 320, and 220L/min to simulate normal, mild and poor coughing efforts, respectively. The coughing jet was revealed by laser light-sheet and images were captured by high definition video. Smoke concentration in the plume was estimated from the light scattered by smoke particles. Significant exposure was arbitrarily defined where there was $ 20% of normalized smoke concentration. Results: During normal cough, expelled air dispersion distances were 68, 30 and 15 cm along the median sagittal plane when the HPS wore no mask, a surgical mask and a N95 mask, respectively. In moderate lung injury, the corresponding air dispersion distances for mild coughing efforts were reduced to 55, 27 and 14 cm, respectively, p , 0.001. The distances were reduced to 30, 24 and 12 cm, respectively during poor coughing effort as in severe lung injury. Lateral dispersion distances during normal cough were 0, 28 and 15 cm when the HPS wore no mask, a surgical mask and a N95 mask, respectively. Conclusions: Normal cough produced a turbulent jet about 0.7 m towards the end of the bed from the recumbent subject. N95 mask was more effective than surgical mask in preventing expelled air leakage during coughing but there was still significant sideway leakage.
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TL;DR: The highest quality cluster-RCTs suggest respiratory virus spread can be prevented by hygienic measures, such as handwashing, especially around younger children, as well asSimple and low-cost interventions would be useful for reducing transmission of epidemic respiratory viruses.
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Physical interventions to interrupt or reduce the spread of respiratory viruses: systematic review
Tom Jefferson,Chris Del Mar,Liz Dooley,Eliana Ferroni,Lubna A. Al-Ansary,Ghada Bawazeer,Mieke L van Driel,Ruth Foxlee,A Rivetti +8 more
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