Literature DB >> 24748609

Utilizing syndromic surveillance data for estimating levels of influenza circulation.

Oscar Patterson-Lomba, Sander Van Noort, Benjamin J Cowling, Jacco Wallinga, M Gabriela M Gomes, Marc Lipsitch, Edward Goldstein.   

Abstract

The availability of weekly Web-based participatory surveillance data on self-reported influenza-like illness (ILI), defined here as self-reported fever and cough/sore throat, over several influenza seasons allows for estimation of the incidence of influenza infection in population cohorts. We demonstrate this using syndromic data reported through the Influenzanet surveillance platform in the Netherlands. We used the 2011-2012 influenza season, a low-incidence season that began late, to assess the baseline rates of self-reported ILI during periods of low influenza circulation, and we used ILI rates above that baseline level from the 2012-1013 season, a major influenza season, to estimate influenza attack rates for that period. The latter conversion required estimates of age-specific probabilities of self-reported ILI given influenza (Flu) infection (P(ILI | Flu)), which were obtained from separate data (extracted from Hong Kong, China, household studies). For the 2012-2013 influenza season in the Netherlands, we estimated combined influenza A/B attack rates of 29.2% (95% credible interval (CI): 21.6, 37.9) among survey participants aged 20-49 years, 28.3% (95% CI: 20.7, 36.8) among participants aged 50-60 years, and 5.9% (95% CI: 0.4, 11.8) among participants aged ≥61 years. Estimates of influenza attack rates can be obtained in other settings using analogous, multiseason surveillance data on self-reported ILI together with separate, context-specific estimates of P(ILI | Flu).
© The Author 2014. Published by Oxford University Press on behalf of the Johns Hopkins Bloomberg School of Public Health. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com.

Entities:  

Keywords:  attack rate; influenza; influenza-like illness; participatory surveillance

Mesh:

Year:  2014        PMID: 24748609      PMCID: PMC4036214          DOI: 10.1093/aje/kwu061

Source DB:  PubMed          Journal:  Am J Epidemiol        ISSN: 0002-9262            Impact factor:   4.897


  19 in total

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Authors:  Edward Goldstein; Sarah Cobey; Saki Takahashi; Joel C Miller; Marc Lipsitch
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9.  Internet-based monitoring of influenza-like illness (ILI) in the general population of the Netherlands during the 2003-2004 influenza season.

Authors:  Richard L Marquet; Aad I M Bartelds; Sander P van Noort; Carl E Koppeschaar; John Paget; François G Schellevis; Jouke van der Zee
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2.  Estimating influenza attack rates in the United States using a participatory cohort.

Authors:  Rumi Chunara; Edward Goldstein; Oscar Patterson-Lomba; John S Brownstein
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4.  Saúde na Copa: The World's First Application of Participatory Surveillance for a Mass Gathering at FIFA World Cup 2014, Brazil.

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7.  Participatory Surveillance Based on Crowdsourcing During the Rio 2016 Olympic Games Using the Guardians of Health Platform: Descriptive Study.

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Review 8.  Public health for the people: participatory infectious disease surveillance in the digital age.

Authors:  Oktawia P Wójcik; John S Brownstein; Rumi Chunara; Michael A Johansson
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9.  A Platform for Crowdsourced Foodborne Illness Surveillance: Description of Users and Reports.

Authors:  Patrick Quade; Elaine Okanyene Nsoesie
Journal:  JMIR Public Health Surveill       Date:  2017-07-05

10.  An Integrated Influenza Surveillance Framework Based on National Influenza-Like Illness Incidence and Multiple Hospital Electronic Medical Records for Early Prediction of Influenza Epidemics: Design and Evaluation.

Authors:  Cheng-Yi Yang; Ray-Jade Chen; Wan-Lin Chou; Yuarn-Jang Lee; Yu-Sheng Lo
Journal:  J Med Internet Res       Date:  2019-02-01       Impact factor: 5.428

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