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Covasim: An agent-based model of COVID-19 dynamics and interventions

PLoS Computational Biology · 2021 · Vol. 17(7) · pp. e1009149–e1009149
Cliff C. KerrRobyn M. StuartDina MistryRomesh AbeysuriyaKatherine RosenfeldGregory R. HartRafael C. NúñezJamie A. CohenPrashanth SelvarajBrittany HagedornLauren GeorgeMichał JastrzębskiAmanda S IzzoGreer FowlerAnna PalmerDominic DelportNick ScottSherrie L. KellyCaroline S. BennetteBradley G. WagnerStewart T. ChangAssaf P. OronEdward A. WengerJasmina Panovska‐GriffithsMichael FamulareDaniel J. Klein

Abstract

The COVID-19 pandemic has created an urgent need for models that can project epidemic trends, explore intervention scenarios, and estimate resource needs. Here we describe the methodology of Covasim (COVID-19 Agent-based Simulator), an open-source model developed to help address these questions. Covasim includes country-specific demographic information on age structure and population size; realistic transmission networks in different social layers, including households, schools, workplaces, long-term care facilities, and communities; age-specific disease outcomes; and intrahost viral dynamics, including viral-load-based transmissibility. Covasim also supports an extensive set of interventions, including non-pharmaceutical interventions, such as physical distancing and protective equipment; pharmaceutical interventions, including vaccination; and testing interventions, such as symptomatic and asymptomatic testing, isolation, contact tracing, and quarantine. These interventions can incorporate the effects of delays, loss-to-follow-up, micro-targeting, and other factors. Implemented in pure Python, Covasim has been designed with equal emphasis on performance, ease of use, and flexibility: realistic and highly customized scenarios can be run on a standard laptop in under a minute. In collaboration with local health agencies and policymakers, Covasim has already been applied to examine epidemic dynamics and inform policy decisions in more than a dozen countries in Africa, Asia-Pacific, Europe, and North America.

COVID-19 epidemiological studiesCOVID-19 Pandemic ImpactsViral Infections and Outbreaks ResearchCoronavirus disease 2019 (COVID-19)Dynamics (music)2019-20 coronavirus outbreakSevere acute respiratory syndrome coronavirus 2 (SARS-CoV-2)Computer scienceComputational biologyMedicineVirologyBiologyPhysics

MeSH terms

Host Microbial InteractionsPhysical DistancingCOVID-19SARS-CoV-2COVID-19 VaccinesCOVID-19 TestingComputer SimulationHand DisinfectionHumansMasksModels, BiologicalQuarantineSoftwareSystems AnalysisContact Tracing

Funding

  • Bill and Melinda Gates Foundation
  • Burnet Institute
  • QIMR Berghofer Medical Research Institute
  • University of South Africa
  • Jomo Kenyatta University of Agriculture and Technology
  • Jet Propulsion Laboratory
  • University of California, San Diego
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635
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