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Dynamic modeling approaches to characterize the functioning of health systems: A systematic review of the literature

机译:动态建模方法,以表征健康系统的运作:对文献的系统综述

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Abstract Universal Health Coverage (UHC) is one of the targets for the United Nations Sustainable Development Goal 3. The impetus for UHC has led to an increased demand for time-sensitive tools to enhance our knowledge of how health systems function and to evaluate impact of system interventions. We define the field of “health system modeling” (HSM) as an area of research where dynamic mathematical models can be designed in order to describe, predict, and quantitatively capture the functioning of health systems. HSM can be used to explore the dynamic relationships among different system components, including organizational design, financing and other resources (such as investments in resources and supply chain management systems) – what we call “inputs” – on access, coverage, and quality of care – what we call “outputs”, toward improved health system “outcomes”, namely increased levels and fairer distributions of population health and financial risk protection. We undertook a systematic review to identify the existing approaches used in HSM. We identified “systems thinking” – a conceptual and qualitative description of the critical interactions within a health system – as an important underlying precursor to HSM, and collated a critical collection of such articles. We then reviewed and categorized articles from two schools of thoughts: “system dynamics” (SD)” and “susceptible-infected-recovered-plus” (SIR+). SD emphasizes the notion of accumulations of stocks in the system, inflows and outflows, and causal feedback structure to predict intended and unintended consequences of policy interventions. The SIR?+?models link a typical disease transmission model with another that captures certain aspects of the system that impact the outcomes of the main model. These existing methods provide critical insights in informing the design of HSM, and provide a departure point to extend this research agenda. We highlight the opportunity to advance modeling methods to further understand the dynamics between health system inputs and outputs. Highlights ? Time-sensitive, dynamic models are needed to enhance understanding of health systems function. ? We define the area of health system modeling and review related literature. ? We classify literature into two categories, “system dynamics” and “susceptible-infected-recovered-plus”. ? There is opportunity to advance modeling methods to further understand the dynamics.
机译:摘要普遍健康覆盖(UHC)是联合国可持续发展目标的目标之一。UHC的动力导致了对时间敏感工具的需求增加,以提高我们对卫生系统如何运作和评估影响的知识系统干预措施。我们将“健康系统建模”(HSM)的领域定义为可以设计动态数学模型的研究领域,以便描述,预测和定量捕获健康系统的运作。 HSM可用于探索不同系统组件之间的动态关系,包括组织设计,融资和其他资源(例如资源和供应链管理系统的投资) - 我们称之为“投入” - 在访问,覆盖和质量上关心 - 我们所谓的“产出”,朝着改善的健康系统“成果”,即人口健康和财务风险保护的水平和更公平的分布。我们进行了系统审查,以确定HSM中使用的现有方法。我们确定了“系统思维” - 卫生系统内关键互动的概念和定性描述 - 作为HSM的重要潜在的前体,并整理了这种文章的关键集合。然后,我们从两所思想中审查和分类文章:“系统动态”(SD)“和”敏感感染 - 恢复 - 加“(SIR +)。 SD强调了系统,流入和流出的股票累计,以及因果反馈结构,以预测政策干预的预期和意外后果。 SIR?+?模型将典型的疾病传输模型与另一个典型的疾病传输模型联系起来,捕获系统的某些方面影响了主要模型的结果。这些现有方法提供了通知HSM设计的关键见解,并提供延长本研究议程的出发点。我们突出了推进建模方法的机会,以进一步了解健康系统输入和输出之间的动态。强调 ?需要时间敏感,需要动态模型来增强对健康系统功能的理解。还是我们定义了健康系统建模和审查相关文献领域。还是我们将文学分为两类,“系统动态”和“易感感染 - 加上”。还是有机会提前建模方法以进一步了解动态。

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