Dynamic Stochastic Optimization of Emergent Blood Collection and Distribution from Supply Chain Perspective
Author(s) -
Xiangyu Jin,
Huajun Tang,
Yuxin Huang
Publication year - 2021
Publication title -
complexity
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.447
H-Index - 61
eISSN - 1099-0526
pISSN - 1076-2787
DOI - 10.1155/2021/5532672
Subject(s) - blood donor , blood collection , blood supply , supply chain , apheresis , donation , work (physics) , blood cell , red blood cell , distribution (mathematics) , operations management , business , risk analysis (engineering) , medicine , computer science , medical emergency , surgery , engineering , marketing , economics , immunology , mechanical engineering , mathematical analysis , platelet , mathematics , economic growth
In response to emergencies, it is critical to investigate how to deliver emergency supplies efficiently and securely to disasteraffected areas and people. (ere is no doubt that blood is deemed one of the vital relief supplies, and ensuring smooth blood delivery may substantially alleviate subsequent impacts caused by the disaster. Taking red blood cell products as the research object, this work proposes a four-echelon blood supply chain model. Specifically, it includes blood donors, blood donation houses, blood centres, and hospitals. Furthermore, numerical analysis is provided to test the feasibility of blood collection and distribution schemes and conduct sensitivity analysis to test the impacts of the relevant parameters (e.g., apheresis donation proportion of red blood cells (RBCs), distance between blood donors and blood facilities, and times of blood donation) on the scheme.(is research provides some scientific and reasonable support for decision makers andmanagerial implications for emergency departments and contributes to the study of emergent blood supply chain.
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