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Epidemic Informatics and Control: A Review from System Informatics to Epidemic Response and Risk Management in Public Health

2022/01/01 by Hui Yang, Siqi Zhang, Runsang Liu +5
Engineering · Mathematics · Medicine · #Business #COVID-19 epidemiological studies #Computer science #Context (archaeology) #Data science #Data-Driven Disease Surveillance #Economic growth #Engineering #Geography #Health care #Health informatics #Health policy #Informatics #International health #Preparedness #Public health informatics #Risk analysis (engineering) #Viral Infections and Outbreaks Research

paper · pdf · doi:10.1007/978-3-030-75166-1_1

openalex publication_date 2022/01/01 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/05

Abstract

This paper presents a holistic systems informatics approach, i.e., Define, Measure, Analyze, Improve, and Control (DMAIC), for epidemic response and management through the intensive use of data, statistics and optimization. Despite the sustained successes of system informatics in a variety of established industries such as manufacturing, logistics, services and beyond, there is a dearth of concentrated review and application of the data-driven DMAIC approach in the context of epidemic outbreaks. First, we define specific challenges posed by epidemic outbreaks to populational health, health systems, as well as economic challenges to different industries such as retailing, education and manufacturing. Second, we present a review of medical testing and statistical sampling methods for data collection, as well as existing efforts in data management and data visualization. Third, we discuss the importance to realizing the full potential of data for epidemic insights, and emphasize the need to leverage analytical methods and tools for decision support. Fourth, an epidemic brings imperative changes to health systems. We discuss the new trend of healthcare solutions to improve system resilience, including telehealth, artificial intelligence, resource allocation, and system re-design. In closing, prescriptive approaches are discussed to optimize the health policies and action strategies for controlling the spread of virus. We posit that this work will catalyze more in-depth investigations and multi-disciplinary research efforts to accelerate the application of system informatics methods and tools in epidemic response and risk management.

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