| Literature DB >> 26251155 |
Eric Forgoston1, Leah B Shaw, Ira B Schwartz.
Abstract
A new method is proposed to infer unobserved epidemic subpopulations by exploiting the synchronization properties of multistrain epidemic models. A model for dengue fever is driven by simulated data from secondary infective populations. Primary infective populations in the driven system synchronize to the correct values from the driver system. Most hospital cases of dengue are secondary infections, so this method provides a way to deduce unobserved primary infection levels. We derive center manifold equations that relate the driven system to the driver system and thus motivate the use of synchronization to predict unobserved primary infectives. Synchronization stability between primary and secondary infections is demonstrated through numerical measurements of conditional Lyapunov exponents and through time series simulations.Entities:
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Year: 2015 PMID: 26251155 PMCID: PMC4550571 DOI: 10.1007/s11538-015-0091-7
Source DB: PubMed Journal: Bull Math Biol ISSN: 0092-8240 Impact factor: 1.758