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A master surgical scheduling approach for cyclic scheduling in operating room departments

机译:手术室部门中周期性调度的主要外科手术调度方法

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This paper addresses the problem of operating room (OR) scheduling at the tactical level of hospital planning and control. Hospitals repetitively construct operating room schedules, which is a time-consuming, tedious, and complex task. The stochasticity of the durations of surgical procedures complicates the construction of operating room schedules. In addition, unbalanced scheduling of the operating room department often causes demand fluctuation in other departments such as surgical wards and intensive care units. We propose cyclic operating room schedules, so-called master surgical schedules (MSSs) to deal with this problem. In an MSS, frequently performed elective surgical procedure types are planned in a cyclic manner. To deal with the uncertain duration of procedures we use planned slack. The problem of constructing MSSs is modeled as a mathematical program containing probabilistic constraints. Since the resulting mathematical program is computationally intractable we propose a column generation approach that maximizes the operation room utilization and levels the requirements for subsequent hospital beds such as wards and intensive care units in two subsequent phases. We tested the solution approach with data from the Erasmus Medical Center. Computational experiments show that the proposed solution approach works well for both the OR utilization and the leveling of requirements of subsequent hospital beds.
机译:本文在医院规划和控制的战术层面上解决了手术室(OR)调度的问题。医院重复地制定手术室时间表,这是一项耗时,乏味且复杂的任务。手术过程持续时间的随机性使手术室时间表的构建变得复杂。另外,手术室科室的日程安排不平衡通常会导致其他科室的需求波动,例如外科病房和重症监护室。我们提出周期性的手术室时间表,即所谓的主手术时间表(MSS),以解决该问题。在MSS中,以循环方式计划频繁执行的选择性外科手术程序类型。为了处理不确定的过程持续时间,我们使用计划的松弛时间。构建MSS的问题被建模为一个包含概率约束的数学程序。由于生成的数学程序在计算上难以处理,因此我们提出了一种列生成方法,该方法可最大化手术室的利用率,并在随后的两个阶段中平衡后续病床(例如病房和重症监护病房)的要求。我们使用伊拉斯姆斯医学中心的数据对解决方案方法进行了测试。计算实验表明,所提出的解决方案对于手术室的利用率和后续医院病床需求的均衡均适用。

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