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Influenza Virus Aerosols in Human Exhaled Breath: Particle Size, Culturability, and Effect of Surgical Masks

PLoS Pathogens · 2013 · Vol. 9(3) · pp. e1003205–e1003205
Donald K. MiltonM. Patricia FabianBenjamin J. CowlingMichael L. GranthamJames McDevitt

Abstract

The CDC recommends that healthcare settings provide influenza patients with facemasks as a means of reducing transmission to staff and other patients, and a recent report suggested that surgical masks can capture influenza virus in large droplet spray. However, there is minimal data on influenza virus aerosol shedding, the infectiousness of exhaled aerosols, and none on the impact of facemasks on viral aerosol shedding from patients with seasonal influenza. We collected samples of exhaled particles (one with and one without a facemask) in two size fractions ("coarse">5 µm, "fine"≤5 µm) from 37 volunteers within 5 days of seasonal influenza onset, measured viral copy number using quantitative RT-PCR, and tested the fine-particle fraction for culturable virus. Fine particles contained 8.8 (95% CI 4.1 to 19) fold more viral copies than did coarse particles. Surgical masks reduced viral copy numbers in the fine fraction by 2.8 fold (95% CI 1.5 to 5.2) and in the coarse fraction by 25 fold (95% CI 3.5 to 180). Overall, masks produced a 3.4 fold (95% CI 1.8 to 6.3) reduction in viral aerosol shedding. Correlations between nasopharyngeal swab and the aerosol fraction copy numbers were weak (r = 0.17, coarse; r = 0.29, fine fraction). Copy numbers in exhaled breath declined rapidly with day after onset of illness. Two subjects with the highest copy numbers gave culture positive fine particle samples. Surgical masks worn by patients reduce aerosols shedding of virus. The abundance of viral copies in fine particle aerosols and evidence for their infectiousness suggests an important role in seasonal influenza transmission. Monitoring exhaled virus aerosols will be important for validation of experimental transmission studies in humans.

Infection Control and VentilationRespiratory viral infections researchCOVID-19 epidemiological studiesAerosolViral sheddingVirusVirologyInfluenza A virusCoronavirus disease 2019 (COVID-19)Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2)Fraction (chemistry)AerosolizationMedicine

MeSH terms

AerosolsAir MicrobiologyCoughCross InfectionHumansInfluenza, HumanMasksOrthomyxoviridaeParticle SizeRespirationRNA, ViralVirus SheddingExhalation

Funding

  • Amylin Pharmaceuticals
  • Auburn University
  • National Institutes of Health
  • Centers for Disease Control and Prevention
  • Federal Aviation Administration
Citations
717
FWCI
20.61
field-weighted impact
References
29
Percentile
100%
vs. same field & year
Citations per year
References
Review of Aerosol Transmission of Influenza A Virus
Emerging infectious diseases · 2006 · 816 citations
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