Proactive transshipment in the blood supply chain: A stochastic programming approach

•A new model to make decisions on blood transhipment is developed.•The proposed model is applicable in a network of hospitals.•The model decides on proactive transhipment and order quantities simultaneously.•The performance of the proposed model is comprehensively investigated.•FIFO restriction is e...

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Published in:Omega (Oxford) Vol. 98; p. 102112
Main Authors: Dehghani, Maryam, Abbasi, Babak, Oliveira, Fabricio
Format: Journal Article
Language:English
Published: Elsevier Ltd 01.01.2021
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ISSN:0305-0483, 1873-5274
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Abstract •A new model to make decisions on blood transhipment is developed.•The proposed model is applicable in a network of hospitals.•The model decides on proactive transhipment and order quantities simultaneously.•The performance of the proposed model is comprehensively investigated.•FIFO restriction is embedded in the extended model. The main objective when managing inventories in blood supply chains is to establish an efficient balance between the wastage and shortage of blood units. The uncertain demand and the perishable nature of blood units can result in over- or under-stocking and increase wastage and shortage costs. In this study, we analyze how a proactive transshipment policy can avoid future shortages in addition to mitigate wastage. We consider a network of hospitals with uncertain demand in which each hospital makes decisions on the quantity to order from a central blood bank and to transship to other hospitals in each review period. We formulate the problem as a two-stage stochastic programming model. To generate scenarios, the Quasi-Monte Carlo sampling approach is employed and the optimal number of scenarios is determined by conducting stability tests. We performed numerical experiments to evaluate the performance of the proposed model and investigate the potential benefits of the outlined proactive transshipment. The developed model is used to compare the optimized policy with the current practice in some hospitals in Australia and with a no-transshipment policy. The numerical results indicate significant potential cost savings in comparison with the current policy in use and the no-transshipment policy.
AbstractList •A new model to make decisions on blood transhipment is developed.•The proposed model is applicable in a network of hospitals.•The model decides on proactive transhipment and order quantities simultaneously.•The performance of the proposed model is comprehensively investigated.•FIFO restriction is embedded in the extended model. The main objective when managing inventories in blood supply chains is to establish an efficient balance between the wastage and shortage of blood units. The uncertain demand and the perishable nature of blood units can result in over- or under-stocking and increase wastage and shortage costs. In this study, we analyze how a proactive transshipment policy can avoid future shortages in addition to mitigate wastage. We consider a network of hospitals with uncertain demand in which each hospital makes decisions on the quantity to order from a central blood bank and to transship to other hospitals in each review period. We formulate the problem as a two-stage stochastic programming model. To generate scenarios, the Quasi-Monte Carlo sampling approach is employed and the optimal number of scenarios is determined by conducting stability tests. We performed numerical experiments to evaluate the performance of the proposed model and investigate the potential benefits of the outlined proactive transshipment. The developed model is used to compare the optimized policy with the current practice in some hospitals in Australia and with a no-transshipment policy. The numerical results indicate significant potential cost savings in comparison with the current policy in use and the no-transshipment policy.
ArticleNumber 102112
Author Oliveira, Fabricio
Dehghani, Maryam
Abbasi, Babak
Author_xml – sequence: 1
  givenname: Maryam
  surname: Dehghani
  fullname: Dehghani, Maryam
  organization: School of Business IT and Logistics, RMIT University, Melbourne, Victoria 3000, Australia
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  givenname: Babak
  orcidid: 0000-0002-4332-2662
  surname: Abbasi
  fullname: Abbasi, Babak
  email: babak.abbasi@rmit.edu.au
  organization: School of Business IT and Logistics, RMIT University, Melbourne, Victoria 3000, Australia
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  givenname: Fabricio
  orcidid: 0000-0001-7076-4514
  surname: Oliveira
  fullname: Oliveira, Fabricio
  organization: Department of Mathematics and Systems Analysis, School of Science, Aalto University, FI-00076 AALTO, Finland
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Keywords Lateral transshipment
Inventory management
Healthcare operations
Stochastic optimization
Blood supply chain
Language English
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Snippet •A new model to make decisions on blood transhipment is developed.•The proposed model is applicable in a network of hospitals.•The model decides on proactive...
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SubjectTerms Blood supply chain
Healthcare operations
Inventory management
Lateral transshipment
Stochastic optimization
Title Proactive transshipment in the blood supply chain: A stochastic programming approach
URI https://dx.doi.org/10.1016/j.omega.2019.102112
Volume 98
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