Suppr超能文献

设计一个具有三级输血网络可能性的血液物流管理最优模型。

Designing an optimal model of blood logistics management with the possibility of return in the three-level blood transfusion network.

机构信息

Department of Industrial Engineering, Faculty of Industry and Mechanic, Sajjad University, Mashhad, Iran.

Blood Research Center, Higher Institute of Blood Transfusion Education and Mashhad Regional Blood Transfusion Training Center, Mashhad, Iran.

出版信息

BMC Health Serv Res. 2023 Nov 27;23(1):1304. doi: 10.1186/s12913-023-10240-0.

Abstract

BACKGROUND

Inventory managers in the blood supply chain always endeavor to provide their clients with prompt and appropriate responses. On the other hand, timely and regular blood deliveries to consumers are essential since ineffective delivery and transportation practices promote shortages, returns, blood loss. The paper attempted to develop an extensive and integrated optimal model of blood transfusion network logistics management by blood type to reduce the cost of losses, returns, and blood shortages given the relevance of this for the blood transfusion network.

METHODS

The regional blood transfusion network in Khorasan Razavi, which contains one main base, six central bases, and 54 hospitals, should be constructed using the optimal model for blood inventory management and distribution. A reusable simulation process was used to identify the optimal behavior for the inventory of all participants in the region (central bases as suppliers and hospitals as consumers), and the demand of hospitals as consumers has been calculated using artificial neural networks. This will lead to a significant reduction of returned blood units by consumers, optimal management of suppliers' and consumers' inventory to prevent waste and shortages. The routing method was used to proceed with the designed model and look into the optimal strategy to distribute blood requested by the consumers. with the aim of reducing the cost and increasing the speed of transportation.

RESULTS

The model's solution allowed for the estimation of the amount of consumers' demand, the optimal amount of target stock, the central bases and hospitals' reorder points, as well as the method of distributing blood from the supplier to its consumers. Implementing the model leads to outcomes such as reducing the time of blood transfer from the central bases to their consumers, increasing the speed of blood delivery to the consumers, increasing the average stock of blood in the central bases, reducing the accumulation of distribution machines at the location of the central bases, the amount of stock, the method for requesting, consuming, and storing blood, and the performance of the central bases' consumers all affect how much control they have over them.

摘要

背景

血液供应链中的库存管理者总是努力为客户提供及时、恰当的响应。另一方面,及时、定期向消费者供应血液至关重要,因为无效的配送和运输实践会导致短缺、退货、血液损失。本文试图通过血型建立一个广泛而综合的输血网络物流管理优化模型,以降低因相关血液输血网络而导致的损失、退货和血液短缺成本。

方法

利用最优模型进行血液库存管理和配送,构建包括一个主基地、六个中心基地和 54 家医院在内的霍拉桑拉扎维区域血液输血网络。使用可重复使用的模拟过程来确定该地区(中心基地作为供应商和医院作为消费者)所有参与者的库存最优行为,并使用人工神经网络计算医院作为消费者的需求。这将导致消费者退回的血液单位数量显著减少,优化供应商和消费者的库存管理,以防止浪费和短缺。路由方法用于进行设计模型,并研究分配消费者请求的血液的最优策略,以降低成本并提高运输速度。

结果

该模型的解决方案允许估计消费者需求的数量、目标库存的最优数量、中心基地和医院的再订货点,以及从供应商向其消费者分配血液的方法。实施该模型可以减少从中心基地到其消费者的血液转移时间,提高血液向消费者的交付速度,增加中心基地的平均血液库存,减少中心基地所在地的配送机器的积累,减少库存、请求、消耗和存储血液的方法,以及中央基地消费者的表现,所有这些都影响他们对这些因素的控制程度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/680a/10680208/c0245486ed7b/12913_2023_10240_Fig1_HTML.jpg

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