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Patients, primary care, and policy: Agent-based simulation modeling for health care decision support

Martin Comis, Catherine Cleophas, Christina Büsing

2021Health Care Management Science18 citationsDOIOpen Access PDF

Abstract

Primary care systems are a cornerstone of universally accessible health care. The planning, analysis, and adaptation of primary care systems is a highly non-trivial problem due to the systems' inherent complexity, unforeseen future events, and scarcity of data. To support the search for solutions, this paper introduces the hybrid agent-based simulation model SiM-Care. SiM-Care models and tracks the micro-interactions of patients and primary care physicians on an individual level. At the same time, it models the progression of time via the discrete-event paradigm. Thereby, it enables modelers to analyze multiple key indicators such as patient waiting times and physician utilization to assess and compare primary care systems. Moreover, SiM-Care can evaluate changes in the infrastructure, patient behavior, and service design. To showcase SiM-Care and its validation through expert input and empirical data, we present a case study for a primary care system in Germany. Specifically, we study the immanent implications of demographic change on rural primary care and investigate the effects of an aging population and a decrease in the number of physicians, as well as their combined effects.

Topics & Concepts

Health informaticsDecision support systemHealth administrationCornerstonePrimary careHealth careScarcityPrimary health careService (business)Adaptation (eye)PopulationMedicinePopulation healthClinical decision support systemNursingHealth services researchMedical emergencyPrimary care physicianComputer scienceEmpirical researchSystem dynamicsPublic healthAmbulatory careMEDLINEKey (lock)Process managementKnowledge managementPopulation ageingInformation systemSimulation modelingDiscrete event simulationInformaticsWork (physics)Management scienceHealthcare systemHealthcare Operations and Scheduling OptimizationHealthcare Systems and TechnologySimulation Techniques and Applications
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