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Correlation of national and healthcare workers COVID-19 infection data; implications for large-scale viral testing programs

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  • Dan Wu
  • Pól Mac Aonghusa
  • Donal F O’Shea

Abstract

Time analysis of the course of an infectious disease epidemic is a critical way to understand the dynamics of pathogen transmission and the effect of population scale interventions. Computational methods have been applied to the progression of the COVID-19 outbreak in five different countries (Ireland, Germany, UK, South Korea and Iceland) using their reported daily infection data. A Gaussian convolution smoothing function constructed a continuous epidemic line profile that was segmented into longitudinal time series of mathematically fitted individual logistic curves. The time series of fitted curves allowed comparison of disease progression with differences in decreasing daily infection numbers following the epidemic peak being of specific interest. A positive relationship between the rate of declining infections and countries with comprehensive COVID-19 testing regimes existed. Insight into different rates of decline infection numbers following the wave peak was also possible which could be a useful tool to guide the reopening of societies. In contrast, extended epidemic timeframes were recorded for those least prepared for large-scale testing and contact tracing. As many countries continue to struggle to implement population wide testing it is prudent to explore additional measures that could be employed. Comparative analysis of healthcare worker (HCW) infection data from Ireland shows it closely related to that of the entire population with respect to trends of daily infection numbers and growth rates over a 57-day period. With 31.6% of all test-confirmed infections in healthcare workers (all employees of healthcare facilities), they represent a concentrated 3% subset of the national population which if exhaustively tested (regardless of symptom status) could provide valuable information on disease progression in the entire population (or set). Mathematically, national population and HCWs can be viewed as a set and subset with significant influences on each other, with solidarity between both an essential ingredient for ending this crisis.

Suggested Citation

  • Dan Wu & Pól Mac Aonghusa & Donal F O’Shea, 2021. "Correlation of national and healthcare workers COVID-19 infection data; implications for large-scale viral testing programs," PLOS ONE, Public Library of Science, vol. 16(4), pages 1-14, April.
  • Handle: RePEc:plo:pone00:0250699
    DOI: 10.1371/journal.pone.0250699
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    Cited by:

    1. Christina Tischer & Carolin Stupp & Patrick Janson & Kristina Willeke & Chu-Wei Hung & Jessica Flöter & Anna Kirchner & Katharina Zink & Lisa Eder & Christina Hackl & Ursula Mühle & Manfred Weidmann &, 2021. "Evaluation of Screening Tests in Bavarian Healthcare Facilities during the Second Wave of the SARS-CoV-2 Pandemic," IJERPH, MDPI, vol. 18(14), pages 1-13, July.

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