Winter Simulation Conference · 2007 · 88 citations · 15 references
VaccinationInfectious Disease ModellingAgent-based ModelsHybrid Epidemic ModelEpidemiological DynamicAgent-based ModelComputational EpidemiologyHybrid ModelPublic HealthJoint BehaviorEpidemic IntelligenceEquation-based ApproachesStatisticsEpidemiology
Agent-based models (ABMs) are powerful in describing structured epidemiological processes involving human behavior and local interaction. The joint behavior of the agents can be very complex and tracking the behavior requires a disciplined approach. At the same time, equation- based models (EBMs) can be more tractable and allow for at least partial analytical insight. However, inadequate representation of the detailed population structure can lead to spurious results, especially when the epidemic process is beginning and individual variation is critical. In this paper, we demonstrate an approach that combines the two modeling paradigms and introduces a hybrid model that starts as agent-based and switches to equation-based after the number of infected individuals is large enough to support a population-averaged approach. This hybrid model can dramatically save computational times and, more fundamentally, allows for the mathematical analysis of emerging structures generated by the ABM.
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Infectious Diseases of Humans: Dynamics and Control
Annals of Internal Medicine · 1992 · 8K citations
Strategies for mitigating an influenza pandemic
Neil M. Ferguson, Derek A. T. Cummings, Christophe Fraser et al. · Nature · 2006 · 2.3K citations · Full text
Modelling disease outbreaks in realistic urban social networks
Stephen Eubank, Hasan Güçlü, V. S. Anil Kumar et al. · Nature · 2004 · 2.1K citations · Full text
Infectious Disease Modeling, Epidemiological Dynamic, Contact Network +5