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A New Framework and Software to Estimate Time-Varying Reproduction Numbers During Epidemics

American Journal of Epidemiology · 2013 · Vol. 178(9) · pp. 1505–1512
Anne CoriNeil M. FergusonChristophe FraserSimon Cauchemez

Abstract

The quantification of transmissibility during epidemics is essential to designing and adjusting public health responses. Transmissibility can be measured by the reproduction number R, the average number of secondary cases caused by an infected individual. Several methods have been proposed to estimate R over the course of an epidemic; however, they are usually difficult to implement for people without a strong background in statistical modeling. Here, we present a ready-to-use tool for estimating R from incidence time series, which is implemented in popular software including Microsoft Excel (Microsoft Corporation, Redmond, Washington). This tool produces novel, statistically robust analytical estimates of R and incorporates uncertainty in the distribution of the serial interval (the time between the onset of symptoms in a primary case and the onset of symptoms in secondary cases). We applied the method to 5 historical outbreaks; the resulting estimates of R are consistent with those presented in the literature. This tool should help epidemiologists quantify temporal changes in the transmission intensity of future epidemics by using surveillance data.

COVID-19 epidemiological studiesData-Driven Disease SurveillanceZoonotic diseases and public healthTransmissibility (structural dynamics)StatisticsSoftwareBasic reproduction numberComputer scienceOutbreakIncidence (geometry)Confidence intervalEstimationMedicine

MeSH terms

HumansSoftwareTime FactorsVirus DiseasesModels, StatisticalIncidenceEpidemics

Funding

  • Royal Society
  • Imperial College London
  • Medical Research Council
  • National Institute of General Medical Sciences
Citations
1,751
FWCI
7.17
field-weighted impact
References
46
Percentile
97%
vs. same field & year
Citations per year
Cited by
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References
Infectious Diseases of Humans: Dynamics and Control
Annals of Internal Medicine · 1992 · 8,011 citations
Smallpox and its eradication
Journal of Epidemiology & Community Health · 1989 · 1,426 citations
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