Transmission of SARS-CoV-2 by inhalation of respiratory aerosol in the Skagit Valley Chorale superspreading event

Journal Article (2021)
Author(s)

Shelly L. Miller (University of Colorado - Boulder)

William W. Nazaroff (University of California)

Jose L. Jimenez (University of Colorado - Boulder)

A.C. Boerstra (BBA Binnenmilieu)

G. Buonanno (University of Cassino and Southern Lazio)

Stephanie J. Dancer (Edinburgh Napier University)

Jarek Kurnitski (Tallinn University of Technology)

Linsey C. Marr (Virginia Tech)

L. Morawska (Queensland University of Technology)

Catherine Noakes (University of Leeds)

Affiliation
External organisation
DOI related publication
https://doi.org/10.1111/ina.12751
More Info
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Publication Year
2021
Language
English
Affiliation
External organisation
Issue number
2
Volume number
31
Pages (from-to)
314-323

Abstract

During the 2020 COVID-19 pandemic, an outbreak occurred following attendance of a symptomatic index case at a weekly rehearsal on 10 March of the Skagit Valley Chorale (SVC). After that rehearsal, 53 members of the SVC among 61 in attendance were confirmed or strongly suspected to have contracted COVID-19 and two died. Transmission by the aerosol route is likely; it appears unlikely that either fomite or ballistic droplet transmission could explain a substantial fraction of the cases. It is vital to identify features of cases such as this to better understand the factors that promote superspreading events. Based on a conditional assumption that transmission during this outbreak was dominated by inhalation of respiratory aerosol generated by one index case, we use the available evidence to infer the emission rate of aerosol infectious quanta. We explore how the risk of infection would vary with several influential factors: ventilation rate, duration of event, and deposition onto surfaces. The results indicate a best-estimate emission rate of 970 ± 390 quanta/h. Infection risk would be reduced by a factor of two by increasing the aerosol loss rate to 5 h−1 and shortening the event duration from 2.5 to 1 h.

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