Publication | Open Access
Modeling dynamic and network heterogeneities in the spread of sexually transmitted diseases
471
Citations
48
References
2002
Year
Network Scale-up MethodInfectious Disease ModellingNetwork ScienceContact TracingImplied Network StructureEngineeringNetwork HeterogeneitiesPossible Transmission RoutesEpidemiological DynamicContact NetworkNetwork AnalysisComputational EpidemiologyPublic HealthEpidemic IntelligenceStatisticsEpidemiologySocial Network AnalysisDisease Dynamics
A wide range of communicable human diseases can be considered as spreading through a network of possible transmission routes. The implied network structure is vital in determining disease dynamics, especially when the average number of connections per individual is small as is the case for many sexually transmitted diseases (STDs). Here we develop an intuitive mathematical framework to deal with the heterogeneities implicit within contact networks and those that arise because of the infection process. These models are compared with full stochastic simulations and show excellent agreement across a wide range of parameters. We show how such models can be used to estimate parameters of epidemiological importance, and how they can be extended to examine the effectiveness of various control strategies, in particular screening programs and contact tracing.
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