FluTE, a Publicly Available Stochastic Influenza Epidemic Simulation Model
Author(s) -
Dennis L. Chao,
M. Elizabeth Halloran,
Valerie Obenchain,
Ira M. Longini
Publication year - 2010
Publication title -
plos computational biology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.628
H-Index - 182
eISSN - 1553-7358
pISSN - 1553-734X
DOI - 10.1371/journal.pcbi.1000656
Subject(s) - pandemic , social distance , preparedness , computer science , population , infectious disease (medical specialty) , epidemic model , influenza a virus subtype h5n1 , influenza pandemic , pandemic influenza , risk analysis (engineering) , operations research , covid-19 , environmental health , virology , medicine , disease , political science , engineering , virus , pathology , law
Mathematical and computer models of epidemics have contributed to our understanding of the spread of infectious disease and the measures needed to contain or mitigate them. To help prepare for future influenza seasonal epidemics or pandemics, we developed a new stochastic model of the spread of influenza across a large population. Individuals in this model have realistic social contact networks, and transmission and infections are based on the current state of knowledge of the natural history of influenza. The model has been calibrated so that outcomes are consistent with the 1957/1958 Asian A(H2N2) and 2009 pandemic A(H1N1) influenza viruses. We present examples of how this model can be used to study the dynamics of influenza epidemics in the United States and simulate how to mitigate or delay them using pharmaceutical interventions and social distancing measures. Computer simulation models play an essential role in informing public policy and evaluating pandemic preparedness plans. We have made the source code of this model publicly available to encourage its use and further development.
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