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Fuzzy Multicriteria Modelling of Decision Making in the Renewal of Healthcare Technologies

Author

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  • Sergio Domínguez

    (Department of Business Management, Technical School of Industrial Engineering, University of Castilla-la Mancha, 13005 Ciudad Real, Spain)

  • María Carmen Carnero

    (Department of Business Management, Technical School of Industrial Engineering, University of Castilla-la Mancha, 13005 Ciudad Real, Spain
    CEG-IST, Instituto Superior Técnico, Universidade de Lisboa, 1649004 Lisbon, Portugal)

Abstract

In the current literature, there are a clear lack of systems to assist in making decisions about the renewal of technology for healthcare equipment, which means that the limited capacity to invest in new equipment cannot usually be appropriately applied as determined by the care requirements of a community. This may have important repercussions for patients, such as the inability to offer treatment or diagnosis, having to delay treatment or diagnosis, increase the risk of patients and care staff of using obsolete equipment, and preventing early, accurate, and reliable diagnosis, all of which have effects on the quality of care to a community. This study therefore describes the first multicriteria model in a fuzzy environment to assist in decision making related to the renewal of healthcare equipment. The fuzzy analytic hierarchy process (FAHP), which allows for ambiguities, uncertainties, and doubts inherent in real-world decision processes to be taken into account, was used to do this. The model produces a plan with actions to be taken depending on the obtained results. The model includes a novel methodology that consists of modifying the top–down technique to allow for the levels of priority for renewing healthcare equipment to be determined from judgements given by three experts. The model was validated by applying it to a set of medical devices, and we show the results for a surgical C-arm, an X-ray CT room, a neonatal ventilator, a defibrillator, and a video-colonoscope. A program was also created using the NI Labview software to process the model so that it could be applied with a user interface that acts quickly, simply, and intuitively.

Suggested Citation

  • Sergio Domínguez & María Carmen Carnero, 2020. "Fuzzy Multicriteria Modelling of Decision Making in the Renewal of Healthcare Technologies," Mathematics, MDPI, vol. 8(6), pages 1-46, June.
  • Handle: RePEc:gam:jmathe:v:8:y:2020:i:6:p:944-:d:368841
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    References listed on IDEAS

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    1. Ly, Pham Thi Minh & Lai, Wen-Hsiang & Hsu, Chiung-Wen & Shih, Fang-Yin, 2018. "Fuzzy AHP analysis of Internet of Things (IoT) in enterprises," Technological Forecasting and Social Change, Elsevier, vol. 136(C), pages 1-13.
    2. Concetta Manuela La Fata & Toni Lupo & Tommaso Piazza, 2019. "Service quality benchmarking via a novel approach based on fuzzy ELECTRE III and IPA: an empirical case involving the Italian public healthcare context," Health Care Management Science, Springer, vol. 22(1), pages 106-120, March.
    3. P. Thokala & A. Duenas, 2012. "Multiple Criteria Decision Analysis for Health Technology Assessment," Post-Print hal-00800398, HAL.
    4. Gang Kou & Wenshuai Wu, 2014. "Multi-criteria decision analysis for emergency medical service assessment," Annals of Operations Research, Springer, vol. 223(1), pages 239-254, December.
    5. Liberatore, Matthew J. & Nydick, Robert L., 2008. "The analytic hierarchy process in medical and health care decision making: A literature review," European Journal of Operational Research, Elsevier, vol. 189(1), pages 194-207, August.
    6. Lettieri, Emanuele, 2009. "Uncertainty inclusion in budgeting technology adoption at a hospital level: Evidence from a multiple case study," Health Policy, Elsevier, vol. 93(2-3), pages 128-136, December.
    7. S Taghipour & D Banjevic & A K S Jardine, 2011. "Prioritization of medical equipment for maintenance decisions," Journal of the Operational Research Society, Palgrave Macmillan;The OR Society, vol. 62(9), pages 1666-1687, September.
    8. Chen, Hongyi & Kocaoglu, Dundar F., 2008. "A sensitivity analysis algorithm for hierarchical decision models," European Journal of Operational Research, Elsevier, vol. 185(1), pages 266-288, February.
    9. Yoram Wind & Thomas L. Saaty, 1980. "Marketing Applications of the Analytic Hierarchy Process," Management Science, INFORMS, vol. 26(7), pages 641-658, July.
    10. Ivlev, Ilya & Vacek, Jakub & Kneppo, Peter, 2015. "Multi-criteria decision analysis for supporting the selection of medical devices under uncertainty," European Journal of Operational Research, Elsevier, vol. 247(1), pages 216-228.
    11. Irvine Lapsley, 2001. "The Accounting–Clinical Interface—Implementing Budgets for Hospital Doctors," Abacus, Accounting Foundation, University of Sydney, vol. 37(1), pages 79-109, February.
    12. Dursun, Mehtap & Karsak, E. Ertugrul & Karadayi, Melis Almula, 2011. "Assessment of health-care waste treatment alternatives using fuzzy multi-criteria decision making approaches," Resources, Conservation & Recycling, Elsevier, vol. 57(C), pages 98-107.
    13. Chang, Da-Yong, 1996. "Applications of the extent analysis method on fuzzy AHP," European Journal of Operational Research, Elsevier, vol. 95(3), pages 649-655, December.
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    1. Nikola Kadoić & Diana Šimić & Jasna Mesarić & Nina Begičević Ređep, 2021. "Measuring Quality of Public Hospitals in Croatia Using a Multi-Criteria Approach," IJERPH, MDPI, vol. 18(19), pages 1-28, September.

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