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A Three-Level Strategy for the Design and Performance Evaluation of Hospital Departments

机译:医院科室设计与绩效评估的三级策略

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摘要

The efficient management of hospital departments (HDs) has recently become an important issue. Indeed, the increased demand and design for hospital services have saturated the capacity of HD that requires suitable tools for the efficient use of resources and flow of patients, staff, and drugs. This paper proposes a model based on a three-level strategy to design at the tactical level in a concise and effective way the structure, the resources, and the dynamics of a critically congested HD. The design strategy is composed of three basic elements: the modeling module, the optimization module, and the simulation and decision module. The first module employs a Unified Modeling Language tool and a timed Petri net (PN) model to effectively capture the detailed flow and dynamics of patients, starting from their arrival to the HD until their discharge. The optimization module employs the fluid relaxation to concisely approximate in a continuous PN framework the HD model and optimize suitable performance indices. The simulation module verifies that the optimized parameters allow an effective workflow organization while maximizing the patient flow. In case of inconsistencies due to the fluid approximation between the continuous model used in the design phase by the optimization module and the discrete one used in the subsequent verification phase by the simulation module, the latter module revises the values of some HD model parameters. A real case study on the Emergency Cardiology Department of the General Hospital of Bari (Italy) shows the efficiency and accuracy of the proposed method.
机译:医院部门(HD)的有效管理最近已成为一个重要问题。实际上,医院服务需求和设计的增加已经饱和了HD的能力,HD要求使用合适的工具来有效利用资源以及患者,员工和药物的流动。本文提出了一种基于三级策略的模型,以一种简明有效的方式在战术级别进行设计,以设计严重拥挤的高清摄像机的结构,资源和动态。设计策略由三个基本元素组成:建模模块,优化模块以及仿真和决策模块。第一个模块采用统一建模语言工具和定时Petri网(PN)模型,以有效地捕获患者的详细流程和动态,从患者到达HD直至出院。优化模块利用流体松弛来在连续PN框架中简洁地近似HD模型并优化合适的性能指标。模拟模块验证优化的参数可以有效地组织工作流程,同时使患者流量最大化。如果由于优化模块在设计阶段使用的连续模型与仿真模块在随后的验证阶段使用的离散模型之间存在流体近似而导致不一致,则后者模块会修改某些HD模型参数的值。对意大利巴里总医院急诊心脏病科进行的实际案例研究表明,该方法的有效性和准确性。

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