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容量受限的最大覆盖选址问题改善了中风治疗的可及性:一项横断面模拟研究。

The Capacitated Maximal Covering Location Problem Improves Access to Stroke Treatment: A Cross-Sectional Simulation Study.

作者信息

Bando Kyohei, Ohashi Kazuki, Fujiwara Kensuke, Osanai Toshiya, Morii Yasuhiro, Tanikawa Takumi, Fujimura Miki, Ogasawara Katsuhiko

机构信息

Graduate School of Health Sciences, Hokkaido University, Sapporo, Japan.

Faculty of Health Sciences, Hokkaido University, Sapporo, Japan.

出版信息

Health Serv Insights. 2024 Jul 31;17:11786329241263699. doi: 10.1177/11786329241263699. eCollection 2024.

Abstract

Disparities in accessing advanced stroke treatment have been recognized as a policy challenge in multiple countries, including Japan, necessitating priority solutions. Nevertheless, more practical healthcare policies must be implemented due to the limited availability of healthcare staff and financial resources in most nations. This study aimed to evaluate the supply and demand balance of mechanical thrombectomy (MT) and identify areas with high priority for enhancing stroke centers. The target area of this study was Hokkaido, Japan. We adopted the capacitated maximal covering location problem (CMCLP) to propose an optimal allocation without increasing the number of medical facilities. Four realistic scenarios with varying levels of total MT supply capacity for Primary stroke centers and assuming a range of 90 minutes by car from the center were created and simulated. From scenarios 1 to 4, the coverage increased by approximately 53% to 85%, scenarios 2 and 3 had 5% oversupply, and scenario 4 had an oversupply of approximately 20%. When the supply capacity cap was eliminated and 8 PSCs received 31 or more patients, they became priority enhancement targets. The CMCLP estimates demand coverage considering the supply and demand balance and indicates areas and facilities where MT supply capacity enhancement is a priority.

摘要

在包括日本在内的多个国家,获得先进的中风治疗存在差异已被视为一项政策挑战,需要优先解决。然而,由于大多数国家医疗人员和财政资源有限,必须实施更切实可行的医疗政策。本研究旨在评估机械取栓术(MT)的供需平衡,并确定加强中风中心的高优先领域。本研究的目标区域是日本北海道。我们采用容量约束最大覆盖选址问题(CMCLP)来提出一种不增加医疗设施数量的最优配置方案。创建并模拟了四种现实场景,这些场景中初级中风中心的MT总供应能力各不相同,并假设从中心出发驾车90分钟的范围。从场景1到场景4,覆盖范围增加了约53%至85%,场景2和场景3有5%的供应过剩,场景4有大约20%的供应过剩。当取消供应能力上限且8个初级中风中心接收31名或更多患者时,它们成为优先加强的目标。CMCLP在考虑供需平衡的情况下估计需求覆盖范围,并指出MT供应能力加强的优先领域和设施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d160/11292677/1e550da9606a/10.1177_11786329241263699-fig1.jpg

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