Literature DB >> 11325383

Resource allocation for epidemic control over short time horizons.

G S Zaric1, M L Brandeau.   

Abstract

We present a model for allocation of epidemic control resources among a set of interventions. We assume that the epidemic is modeled by a general compartmental epidemic model, and that interventions change one or more of the parameters that describe the epidemic. Associated with each intervention is a 'production function' that relates the amount invested in the intervention to values of parameters in the epidemic model. The goal is to maximize quality-adjusted life years gained or the number of new infections averted over a fixed time horizon, subject to a budget constraint. Unlike previous models, our model allows for interacting populations and non-linear interacting production functions and does not require a long time horizon. We show that an analytical solution to the model may be difficult or impossible to derive, even for simple cases. Therefore, we derive a method of approximating the objective functions. We use the approximations to gain insight into the optimal resource allocation for three problem instances. We also develop heuristics for solving the general resource allocation problem. We present results of numerical studies using our approximations and heuristics. Finally, we discuss implications and applications of this work.

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Year:  2001        PMID: 11325383     DOI: 10.1016/s0025-5564(01)00050-5

Source DB:  PubMed          Journal:  Math Biosci        ISSN: 0025-5564            Impact factor:   2.144


  21 in total

Review 1.  AIDS policy modeling for the 21st century: an overview of key issues.

Authors:  M S Rauner; M L Brandeau
Journal:  Health Care Manag Sci       Date:  2001-09

2.  Integer/linear mathematical programming models: a tool for allocating healthcare resources.

Authors:  Stephanie R Earnshaw; Susan L Dennett
Journal:  Pharmacoeconomics       Date:  2003       Impact factor: 4.981

3.  Improved allocation of HIV prevention resources: using information about prevention program production functions.

Authors:  Margaret L Brandeau; Gregory S Zaric; Vanda de Angelis
Journal:  Health Care Manag Sci       Date:  2005-02

4.  Resource Allocation for Epidemic Control Across Multiple Sub-populations.

Authors:  Ciara E Dangerfield; Martin Vyska; Christopher A Gilligan
Journal:  Bull Math Biol       Date:  2019-02-26       Impact factor: 1.758

5.  A linear programming model for allocating HIV prevention funds with state agencies: a pilot study.

Authors:  Stephanie R Earnshaw; Katherine Hicks; Anke Richter; Amanda Honeycutt
Journal:  Health Care Manag Sci       Date:  2007-09

6.  From Theory to Practice: Implementation of a Resource Allocation Model in Health Departments.

Authors:  Emine Yaylali; Paul G Farnham; Karen L Schneider; Stewart J Landers; Oskian Kouzouian; Arielle Lasry; David W Purcell; Timothy A Green; Stephanie L Sansom
Journal:  J Public Health Manag Pract       Date:  2016 Nov-Dec

7.  Decision making for HIV prevention and treatment scale up: bridging the gap between theory and practice.

Authors:  Sabina S Alistar; Margaret L Brandeau
Journal:  Med Decis Making       Date:  2010-12-29       Impact factor: 2.583

Review 8.  Coevolution spreading in complex networks.

Authors:  Wei Wang; Quan-Hui Liu; Junhao Liang; Yanqing Hu; Tao Zhou
Journal:  Phys Rep       Date:  2019-07-29       Impact factor: 25.600

9.  Optimal investment in HIV prevention programs: more is not always better.

Authors:  Margaret L Brandeau; Gregory S Zaric
Journal:  Health Care Manag Sci       Date:  2009-03

10.  Incentives for Optimal Multi-level Allocation of HIV Prevention Resources.

Authors:  Monali M Malvankar; Gregory S Zaric
Journal:  INFOR       Date:  2011-11-01       Impact factor: 1.588

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