Literature DB >> 20351844

Assumptions management in simulation of infectious disease outbreaks.

Henrik Eriksson1, Magnus Morin, Joakim Ekberg, Johan Jenvald, Toomas Timpka.   

Abstract

Simulation of outbreaks of infectious disease is an important tool for understanding the dynamics of the outbreak process, the impact of disease and population properties, and the potential effect of interventions. However, the interpretation of the simulation results requires a clear understanding of the assumptions made in the underlying model. Typical simulation tasks, such as exploring the space of different scenarios for population and disease properties, require multiple runs with varying model parameters. For such complex tasks, the management of the assumptions made becomes a daunting and potentially error-prone undertaking. We report explicit assumptions management as an approach to capture, model, and document the assumptions for simulator runs. It was found possible to extend ontology-based simulation, which uses an ontological model to parameterize the simulator, to incorporate an assumptions model in the ontology. We conclude that explicit assumptions modeling should be part of any infectious disease simulation architecture from start.

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Year:  2009        PMID: 20351844      PMCID: PMC2815436     

Source DB:  PubMed          Journal:  AMIA Annu Symp Proc        ISSN: 1559-4076


  10 in total

1.  Community interventions and the epidemic prevention potential.

Authors:  M Elizabeth Halloran; Ira M Longini; David M Cowart; Azhar Nizam
Journal:  Vaccine       Date:  2002-09-10       Impact factor: 3.641

2.  Impact of precautionary behaviors during outbreaks of pandemic influenza: modeling of regional differences.

Authors:  Joakim Ekberg; Henrik Eriksson; Magnus Morin; Einar Holm; Magnus Strömgren; Toomas Timpka
Journal:  AMIA Annu Symp Proc       Date:  2009-11-14

3.  Containing pandemic influenza at the source.

Authors:  Ira M Longini; Azhar Nizam; Shufu Xu; Kumnuan Ungchusak; Wanna Hanshaoworakul; Derek A T Cummings; M Elizabeth Halloran
Journal:  Science       Date:  2005-08-03       Impact factor: 47.728

4.  Towards a simulation environment for modeling of local influenza outbreaks.

Authors:  Toomas Timpka; Magnus Morin; Johan Jenvald; Henrik Eriksson; Elin Gursky
Journal:  AMIA Annu Symp Proc       Date:  2005

Review 5.  Networks and epidemic models.

Authors:  Matt J Keeling; Ken T D Eames
Journal:  J R Soc Interface       Date:  2005-09-22       Impact factor: 4.118

6.  Ontology based modeling of pandemic simulation scenarios.

Authors:  Henrik Eriksson; Magnus Morin; Johan Jenvald; Elin Gursky; Einar Holm; Toomas Timpka
Journal:  Stud Health Technol Inform       Date:  2007

7.  Modeling targeted layered containment of an influenza pandemic in the United States.

Authors:  M Elizabeth Halloran; Neil M Ferguson; Stephen Eubank; Ira M Longini; Derek A T Cummings; Bryan Lewis; Shufu Xu; Christophe Fraser; Anil Vullikanti; Timothy C Germann; Diane Wagener; Richard Beckman; Kai Kadau; Chris Barrett; Catherine A Macken; Donald S Burke; Philip Cooley
Journal:  Proc Natl Acad Sci U S A       Date:  2008-03-10       Impact factor: 11.205

8.  Population-based simulations of influenza pandemics: validity and significance for public health policy.

Authors:  Toomas Timpka; Henrik Eriksson; Elin A Gursky; James M Nyce; Magnus Morin; Johan Jenvald; Magnus Strömgren; Einar Holm; Joakim Ekberg
Journal:  Bull World Health Organ       Date:  2009-04       Impact factor: 9.408

9.  An influenza simulation model for immunization studies.

Authors:  L R Elveback; J P Fox; E Ackerman; A Langworthy; M Boyd; L Gatewood
Journal:  Am J Epidemiol       Date:  1976-02       Impact factor: 4.897

10.  Containing pandemic influenza with antiviral agents.

Authors:  Ira M Longini; M Elizabeth Halloran; Azhar Nizam; Yang Yang
Journal:  Am J Epidemiol       Date:  2004-04-01       Impact factor: 4.897

  10 in total
  4 in total

1.  A cloud-based simulation architecture for pandemic influenza simulation.

Authors:  Henrik Eriksson; Massimiliano Raciti; Maurizio Basile; Alessandro Cunsolo; Anders Fröberg; Ola Leifler; Joakim Ekberg; Toomas Timpka
Journal:  AMIA Annu Symp Proc       Date:  2011-10-22

2.  Dynamic Multicore Processing for Pandemic Influenza Simulation.

Authors:  Henrik Eriksson; Toomas Timpka; Armin Spreco; Örjan Dahlström; Magnus Strömgren; Einar Holm
Journal:  AMIA Annu Symp Proc       Date:  2017-02-10

3.  A neighborhood susceptibility index for planning of local physical interventions in response to pandemic influenza outbreaks.

Authors:  Toomas Timpka; Henrik Eriksson; Magnus Strömgren; Olle Eriksson; Joakim Ekberg; Anders Grimvall; James Nyce; Elin Gursky; Einar Holm
Journal:  AMIA Annu Symp Proc       Date:  2010-11-13

4.  Relevance of workplace social mixing during influenza pandemics: an experimental modelling study of workplace cultures.

Authors:  T Timpka; H Eriksson; E Holm; M Strömgren; J Ekberg; A Spreco; Ö Dahlström
Journal:  Epidemiol Infect       Date:  2016-02-05       Impact factor: 4.434

  4 in total

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