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TBase - an Integrated Electronic Health Record and Research Database for Kidney Transplant Recipients
Published on: April 13, 2021
A Simulation-Based Optimization Model to Study the Impact of Multiple-Region Listing and Information Sharing on
Zahra Gharibi1, Michael Hahsler2
1Department of Management, Information Systems and Analytics, State University of New York at Plattsburgh, Plattsburgh, NY 12901, USA.
Abstract:
More than 8000 patients on the waiting list for kidney transplantation die or become ineligible to receive transplants due to health deterioration. At the same time, more than 4000 recovered kidneys from deceased donors are discarded each year in the United States. This paper develops a simulation-based optimization model that considers several crucial factors for a kidney transplantation to improve kidney utilization. Unlike most proposed models, the presented optimization model incorporates details of the offering process, the deterioration of patient health and kidney quality over time, the correlation between patients' health and acceptance decisions, and the probability of kidney acceptance. We estimate model parameters using data obtained from the United Network of Organ Sharing (UNOS) and the Scientific Registry of Transplant Recipients (SRTR). Using these parameters, we illustrate the power of the simulation-based optimization model using two related applications. The former explores the effects of encouraging patients to pursue multiple-region waitlisting on post-transplant outcomes. Here, a simulation-based optimization model lets the patient select the best regions to be waitlisted in, given their demand-to-supply ratios. The second application focuses on a system-level aspect of transplantation, namely the contribution of information sharing on improving kidney discard rates and social welfare. We investigate the effects of using modern information technology to accelerate finding a matching patient to an available donor organ on waitlist mortality, kidney discard, and transplant rates. We show that modern information technology support currently developed by the United Network for Organ Sharing (UNOS) is essential and can significantly improve kidney utilization.
Insights
Kidney transplantation outcomes improve with a new simulation model. This model optimizes organ utilization by considering patient health, kidney quality, and advanced information sharing, reducing waitlist deaths and organ discard.
Area of Science:
- Organ transplantation research
- Health informatics
- Operations research
Background:
- Over 8,000 patients die or become ineligible for kidney transplants annually due to health deterioration.
- More than 4,000 recovered kidneys are discarded each year in the US, highlighting a critical organ utilization issue.
Purpose of the Study:
- To develop and apply a simulation-based optimization model to enhance kidney utilization in transplantation.
- To analyze the impact of patient waitlisting strategies and information sharing on transplant outcomes.
Main Methods:
- Developed a simulation-based optimization model incorporating patient health deterioration, kidney quality decline, and acceptance probabilities.
- Estimated model parameters using data from the United Network of Organ Sharing (UNOS) and the Scientific Registry of Transplant Recipients (SRTR).
- Applied the model to evaluate multi-region waitlisting and the effects of information sharing technologies.
Main Results:
- The model demonstrates that encouraging multi-region waitlisting can improve post-transplant outcomes by optimizing patient selection of regions based on demand-to-supply ratios.
- Information sharing, accelerated by modern IT, significantly reduces kidney discard rates, waitlist mortality, and improves overall transplant rates.
- UNOS-developed IT support is crucial for enhancing kidney utilization.
Conclusions:
- Simulation-based optimization offers a powerful tool for improving kidney transplantation efficiency and patient outcomes.
- Strategic waitlisting and advanced information sharing are vital for maximizing the use of donor kidneys and improving social welfare in transplantation.
Related Concept Videos
Kidney Transplant I: Introduction
Kidney Transplant II: Surgical Procedure
Kidney Transplant III: Nursing Management

