A novel capacity sharing mechanism to collaborative activities in the blood collection process during the COVID-19

Mohammad Reza Ghatreh Samani1, Seyyed-Mahdi Hosseini-Motlagh1

  • 1School of Industrial Engineering, Iran University of Science and Technology, University Ave, Narmak, 16846, Tehran, Iran.

Applied Soft Computing
|August 20, 2021
PubMed

Insights

The COVID-19 pandemic caused a severe blood donor shortage. This study introduces a two-stage optimization model for blood collection and regional sharing, effectively mitigating blood product shortages and wastage.

Area of Science:

  • Operations Research
  • Health Systems Management
  • Public Health

Background:

  • The COVID-19 pandemic significantly reduced blood donations due to public health interventions and donor safety concerns.
  • Blood donation rates in some countries dropped below 30%, creating critical shortages.

Purpose of the Study:

  • To propose a novel two-stage optimization mechanism to address blood product shortages during the COVID-19 outbreak.
  • To minimize unmet demand and avoid blood shortages in health centers through coordinated blood collection and sharing.

Main Methods:

  • Developed a two-stage optimization tool for coordinating blood collection and distribution.
  • Incorporated a stochastic model with a mixed uncertainty approach to handle disruption risks.
  • Utilized a rolling horizon planning method for iterative resource allocation and sharing.

Main Results:

  • The proposed model demonstrated applicability in a real-world case study in Iran.
  • The capacity sharing concept significantly improved blood resource management.
  • The mechanism effectively mitigated both blood shortages and wastage during the pandemic.

Conclusions:

  • The developed optimization tool provides an effective strategy for managing blood supply chains during crises.
  • Capacity sharing is crucial for equitable distribution and preventing shortages in healthcare systems.
  • The model offers a robust solution adaptable to various regions facing similar challenges.