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      A Novel Hybrid Parametric and Non-Parametric Optimisation Model for Average Technical Efficiency Assessment in Public Hospitals during and Post-COVID-19 Pandemic

      , , , , ,
      Bioengineering
      MDPI AG

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          Abstract

          The COVID-19 pandemic has had a significant impact on hospitals and healthcare systems around the world. The cost of business disruption combined with lingering COVID-19 costs has placed many public hospitals on a course to insolvency. To quickly return to financial stability, hospitals should implement efficiency measure. An average technical efficiency (ATE) model made up of data envelopment analysis (DEA) and stochastic frontier analysis (SFA) for assessing efficiency in public hospitals during and after the COVID-19 pandemic is offered. The DEA method is a non-parametric method that requires no information other than the input and output quantities. SFA is a parametric method that considers stochastic noise in data and allows statistical testing of hypotheses about production structure and degree of inefficiency. The rationale for using these two competing approaches is to balance each method’s strengths, weaknesses and introduce a novel integrated approach. To show the applicability and efficacy of the proposed hybrid VRS-CRS-SFA (VCS) model, a case study is presented.

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          Contributors
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          Journal
          BIOENG
          Bioengineering
          Bioengineering
          MDPI AG
          2306-5354
          January 2022
          December 27 2021
          : 9
          : 1
          : 7
          Article
          10.3390/bioengineering9010007
          8772782
          35049716
          2699a9fa-96fc-4cbe-8d7e-9eb934e323b5
          © 2021

          https://creativecommons.org/licenses/by/4.0/

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