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Two resource distribution strategies for dynamic mitigation of influenza pandemics

As recently pointed out by the Institute of Medicine, the existing pandemic containment and mitigation models lack the dynamic decision support capabilities. We present two simulation-based optimization models for developing dynamic predictive resource distribution strategies for cross-regional pand...

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Detalles Bibliográficos
Autores principales: Uribe-Sánchez, Andrés, Savachkin, Alex
Formato: Texto
Lenguaje:English
Publicado: Dove Medlical Press 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3004603/
https://www.ncbi.nlm.nih.gov/pubmed/21197356
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author Uribe-Sánchez, Andrés
Savachkin, Alex
author_facet Uribe-Sánchez, Andrés
Savachkin, Alex
author_sort Uribe-Sánchez, Andrés
collection PubMed
description As recently pointed out by the Institute of Medicine, the existing pandemic containment and mitigation models lack the dynamic decision support capabilities. We present two simulation-based optimization models for developing dynamic predictive resource distribution strategies for cross-regional pandemic outbreaks. In both models, the underlying simulation mimics the disease and population dynamics of the affected regions. The quantity-based optimization model generates a progressive allocation of limited quantities of mitigation resources, including vaccines, antiviral, administration capacities, and social distancing enforcement resources. The budget-based optimization model strives instead allocating a total resource budget. Both models seek to minimize the impact of ongoing outbreaks and the expected impact of potential outbreaks. The models incorporate measures of morbidity, mortality, and social distancing, translated into the societal and economic costs of lost productivity and medical expenses. The models were calibrated using historic pandemic data and implemented on a sample outbreak in Florida, with over four million inhabitants. The quantity-based model was found to be inferior to the budget-based model, which was advantageous in its ability to balance the varying relative cost and effectiveness of individual resources. The models are intended to assist public health policy makers in developing effective distribution policies for mitigation of influenza pandemics.
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spelling pubmed-30046032010-12-30 Two resource distribution strategies for dynamic mitigation of influenza pandemics Uribe-Sánchez, Andrés Savachkin, Alex J Multidiscip Healthc Original Research As recently pointed out by the Institute of Medicine, the existing pandemic containment and mitigation models lack the dynamic decision support capabilities. We present two simulation-based optimization models for developing dynamic predictive resource distribution strategies for cross-regional pandemic outbreaks. In both models, the underlying simulation mimics the disease and population dynamics of the affected regions. The quantity-based optimization model generates a progressive allocation of limited quantities of mitigation resources, including vaccines, antiviral, administration capacities, and social distancing enforcement resources. The budget-based optimization model strives instead allocating a total resource budget. Both models seek to minimize the impact of ongoing outbreaks and the expected impact of potential outbreaks. The models incorporate measures of morbidity, mortality, and social distancing, translated into the societal and economic costs of lost productivity and medical expenses. The models were calibrated using historic pandemic data and implemented on a sample outbreak in Florida, with over four million inhabitants. The quantity-based model was found to be inferior to the budget-based model, which was advantageous in its ability to balance the varying relative cost and effectiveness of individual resources. The models are intended to assist public health policy makers in developing effective distribution policies for mitigation of influenza pandemics. Dove Medlical Press 2010-07-07 /pmc/articles/PMC3004603/ /pubmed/21197356 Text en © 2010 Uribe-Sánchez and Savachkin, publisher and licensee Dove Medical Press Ltd. This is an Open Access article which permits unrestricted noncommercial use, provided the original work is properly cited.
spellingShingle Original Research
Uribe-Sánchez, Andrés
Savachkin, Alex
Two resource distribution strategies for dynamic mitigation of influenza pandemics
title Two resource distribution strategies for dynamic mitigation of influenza pandemics
title_full Two resource distribution strategies for dynamic mitigation of influenza pandemics
title_fullStr Two resource distribution strategies for dynamic mitigation of influenza pandemics
title_full_unstemmed Two resource distribution strategies for dynamic mitigation of influenza pandemics
title_short Two resource distribution strategies for dynamic mitigation of influenza pandemics
title_sort two resource distribution strategies for dynamic mitigation of influenza pandemics
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3004603/
https://www.ncbi.nlm.nih.gov/pubmed/21197356
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