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Scenario-based analysis of fast track strategy optimization on emergency department using integrated safety simulation

机译:基于场景的综合安全仿真快速部门快速轨道战略优化分析

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摘要

Although discrete event simulation models are known as classic cost-effective tools for analysis of healthcare systems, they are barely suited to represent a strategic level of emergency department (ED). This study applies discrete-event simulation combined with the system dynamics approach to present a comprehensive integrated safety simulation investigation of fast track and ED improvement strategies. By embedding a fast track process logic in the base model of ED discrete event simulation, different strategies have been proposed to evaluate the impact of each scenario. Integration of the base simulation model with system dynamics simulation approaches can articulate the main interconnected and sensitive variables affecting ED key performance index. The integrated model presents the impact of sensitive policy parameters for evaluation of fast track strategy optimization including human resources adjustment, ED resources modification and environmental modification strategies. The main contribution of the proposed integrated safety simulation paradigm is to couple the macroscopic level of safety dynamics analysis with the microscopic discrete level simulation. The results comprise the main model with the scenarios tested by the suggested approach to investigate the ED optimized performance levels. The research results have been validated and indicated that the fast track strategy optimization using the integrated safety simulation could play a significant role in facilitating patient flow without requiring any additional resources.
机译:尽管离散事件仿真模型被称为经典成本效益的工具,用于分析医疗保健系统,但它们几乎不适合代表急诊部(ED)的战略层面。本研究采用离散事件模拟结合系统动力学方法,为快速跟踪和ED改善策略提供全面的集成安全仿真调查。通过在ED离散事件仿真的基础模型中嵌入快速轨道过程逻辑,已经提出了不同的策略来评估每个场景的影响。基本仿真模型与系统动力学模拟方法集成可以阐明影响ED关键性能指数的主要互连和敏感变量。综合模型介绍了敏感政策参数对快速轨道策略优化评估的影响,包括人力资源调整,ED资源修改和环境修改策略。拟议的综合安全仿真范式的主要贡献是将宏观水平与微观离散水平仿真结合。结果包括主模型,该方案通过建议的方法测试,以调查ED优化的性能水平。已经验证了研究结果,并表明使用综合安全模拟的快速轨道策略优化可以在促进患者流动时发挥重要作用,而无需任何额外的资源。

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