How generation intervals shape the relationship between growth rates and reproductive numbers
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Open Access
- 28 November 2006
- journal article
- Published by The Royal Society in Proceedings Of The Royal Society B-Biological Sciences
- Vol. 274 (1609), 599-604
- https://doi.org/10.1098/rspb.2006.3754
Abstract
Mathematical models of transmission have become invaluable management tools in planning for the control of emerging infectious diseases. A key variable in such models is the reproductive number R. For new emerging infectious diseases, the value of the reproductive number can only be inferred indirectly from the observed exponential epidemic growth rate r. Such inference is ambiguous as several different equations exist that relate the reproductive number to the growth rate, and it is unclear which of these equations might apply to a new infection. Here, we show that these different equations differ only with respect to their assumed shape of the generation interval distribution. Therefore, the shape of the generation interval distribution determines which equation is appropriate for inferring the reproductive number from the observed growth rate. We show that by assuming all generation intervals to be equal to the mean, we obtain an upper bound to the range of possible values that the reproductive number may attain for a given growth rate. Furthermore, we show that by taking the generation interval distribution equal to the observed distribution, it is possible to obtain an empirical estimate of the reproductive number.Keywords
This publication has 18 references indexed in Scilit:
- Strategies for mitigating an influenza pandemicNature, 2006
- Strategies for containing an emerging influenza pandemic in Southeast AsiaNature, 2005
- Perspectives on the basic reproductive ratioJournal of The Royal Society Interface, 2005
- Effects of antiviral drugs on viral detection in influenza patients and on the sequential infection to their family members—serial examination by rapid diagnosis (Capilia) and virus cultureInternational Congress Series, 2004
- Transmission Dynamics and Control of Severe Acute Respiratory SyndromeScience, 2003
- Transmission potential of smallpox in contemporary populationsNature, 2001
- Dynamics of the 2001 UK Foot and Mouth Epidemic: Stochastic Dispersal in a Heterogeneous LandscapeScience, 2001
- The intrinsic rate of increase of HIV/AIDS: Epidemiological and evolutionary implicationsMathematical Biosciences, 1996
- On the Integral Equation of Renewal TheoryThe Annals of Mathematical Statistics, 1941
- On the True Rate of Natural Increase: As Exemplified by the Population of the United States, 1920Journal of the American Statistical Association, 1925