A model for the spread and control of pandemic influenza in an isolated geographical region
Open Access
- 28 November 2006
- journal article
- Published by The Royal Society in Journal of The Royal Society Interface
- Vol. 4 (13), 325-330
- https://doi.org/10.1098/rsif.2006.0176
Abstract
In the event of an influenza pandemic, the most probable way in which the virus would be introduced to an isolated geographical area is by an infected traveller. We use a mathematical model, structured on the location at which infection occurs and based on published parameters for influenza, to describe an epidemic in a community of one million people. The model is then modified to reflect a variety of control strategies based on social distancing measures, targeted antiviral treatment and antiviral prophylaxis and home quarantine, and the effectiveness of the strategies is compared. The results suggest that the only single strategy that would be successful in preventing an epidemic (with 0 =2.0) is targeted antiviral treatment and prophylaxis, and that closing schools combined with either closing work places or home quarantine would only prevent such an epidemic if these strategies were combined with a modest level of antiviral coverage.Keywords
This publication has 16 references indexed in Scilit:
- Modeling Strategies for Containing an Invading InfectionMathematical Population Studies, 2006
- Pandemic influenza preparedness in the Asia–Pacific regionThe Lancet, 2006
- Reducing the Impact of the Next Influenza Pandemic Using Household-Based Public Health InterventionsPLoS Medicine, 2006
- Strategies for mitigating an influenza pandemicNature, 2006
- Mitigation strategies for pandemic influenza in the United StatesProceedings of the National Academy of Sciences, 2006
- Strategies for containing an emerging influenza pandemic in Southeast AsiaNature, 2005
- An integral equation model for the control of a smallpox outbreakMathematical Biosciences, 2005
- Transmissibility of 1918 pandemic influenzaNature, 2004
- Cruise Ships: High-Risk Passengers and the Global Spread of New Influenza VirusesClinical Infectious Diseases, 2000
- Contributions to the mathematical theory of epidemics—IBulletin of Mathematical Biology, 1991