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Transfusion Preparedness Strategies for Obstetric Hemorrhage: A Cost-Effectiveness Analysis
Brett D Einerson1, Zuzana Stehlikova, Richard E Nelson
1Department of Obstetrics and Gynecology, Division of Maternal-Fetal Medicine, the Department of Anesthesiology, the Department of Internal Medicine, Division of Epidemiology, the Department of Pharmacotherapy, and the Department of Biomedical Informatics, University of Utah Health, Salt Lake City, Utah.
Objective:
To evaluate the cost-effectiveness of common obstetric transfusion preparedness strategies to prevent emergency-release transfusions.
Methods:
A decision analytic model compared five commonly used transfusion preparedness strategies in a general obstetric population. Patients were classified as being at low, moderate, or high risk for transfusion. The most prepared strategy used a policy of universal type and screen plus crossmatch for high-risk patients. Other strategies used universal type and screen only, universal hold clot plus crossmatch for high-risk patients, selective type and screen only in high-risk patients, or no routine admission testing. Strategies were compared using transfusion-related cost and probability estimates derived from patient-level data and from the published literature. The primary outcome was incremental cost per emergency-release transfusion prevented. A strategy was considered cost-effective if the cost was less than $1,500 per emergency-release transfusion avoided as determined by expert consensus. Emergency-release transfusion included universal donor or type-specific packed red cells that are not crossmatched to the recipient. Along with the base-case analyses, we also conducted one- and two-way sensitivity analyses and probabilistic sensitivity analyses using second-order Monte Carlo simulation. Variability in the willingness-to-pay threshold was explored in a cost-effectiveness acceptability analysis. The model was conducted from a hospital perspective.
Results:
In the base-case analysis, the strategy of universal type and screen with crossmatch for high-risk patients yielded an incremental cost of $115,541 per emergency-release transfusion prevented compared with a strategy of universal hold clot. The universal hold clot strategy yielded a cost of $2,878 per emergency-release transfusion prevented compared with a strategy of no routine admission testing. Strategies using universal type and screen were cost-effective in zero of the 10,000 simulations at a willingness-to-pay threshold of $1,500 per emergency-release transfusion prevented. Even at willingness to pay greater than $10,000 to prevent an emergency-release transfusion, universal type and screen strategies were not cost-effective.
Conclusion:
Transfusion preparedness with universal type and screen is not cost-effective in a general obstetric population across a wide range of assumptions and variable ranges.
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