Literature DB >> 22214751

The role of weather on the relation between influenza and influenza-like illness.

Sander P van Noort1, Ricardo Águas, Sébastien Ballesteros, M Gabriela M Gomes.   

Abstract

Influenza epidemics, enabled by viral antigenic drift, occur invariably each winter in temperate climates. However, attempts to correlate the magnitude of virus change and epidemic size have been unsatisfactory. The incidence of influenza is not typically measured directly, but rather derived from the incidence of influenza-like illness (ILI), a clinical syndrome. Weather factors have been shown to influence the manifestation of influenza-like symptoms. We fitted an influenza transmission model to time series of influenza-like illness as monitored from 2003 to 2010 by two independent symptomatic surveillance systems (Influenzanet and EISN) in three European countries. By assuming that seasonality only acts upon the manifestation of symptoms, the model shows a significant correlation between the absolute humidity and temperature at the time of infection, and the proportion of influenza infections fulfilling the clinical ILI case definition, the so-called ILI factor. When a weather-dependent ILI factor is included in the model, the epidemic size of influenza-like illness becomes dependent not only on the susceptibility of the population at the beginning of the epidemic season but also on the weather conditions during which the epidemic unfolds. The combination reduces season-to-season variation in epidemic size and, interestingly, leads to a non-monotonic trend whereby the largest ILI epidemic occurs for moderate initial susceptibility. Copyright Â
© 2012 Elsevier Ltd. All rights reserved.

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Year:  2011        PMID: 22214751     DOI: 10.1016/j.jtbi.2011.12.020

Source DB:  PubMed          Journal:  J Theor Biol        ISSN: 0022-5193            Impact factor:   2.691


  23 in total

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5.  Modelling seasonal influenza: the role of weather and punctuated antigenic drift.

Authors:  R Yaari; G Katriel; A Huppert; J B Axelsen; L Stone
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6.  Utilizing syndromic surveillance data for estimating levels of influenza circulation.

Authors:  Oscar Patterson-Lomba; Sander Van Noort; Benjamin J Cowling; Jacco Wallinga; M Gabriela M Gomes; Marc Lipsitch; Edward Goldstein
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9.  Modeling and statistical analysis of the spatio-temporal patterns of seasonal influenza in Israel.

Authors:  Amit Huppert; Oren Barnea; Guy Katriel; Rami Yaari; Uri Roll; Lewi Stone
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