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Updated: Feb 1, 2026

Optimization of the Cuff Technique for Murine Heart Transplantation
Published on: June 26, 2020
Predicted heart mass is the optimal metric for size match in heart transplantation
Evan P Kransdorf1, Michelle M Kittleson1, Lillian R Benck1
1Smidt Heart Institute, Cedars-Sinai Medical Center, Los Angeles, California.
Insights
Predicted heart mass (PHM) is the best metric for matching donor hearts to recipients, improving survival and reducing organ waste. Using PHM can increase heart transplant utilization and patient outcomes.
Area of Science:
- Cardiology
- Transplantation Surgery
- Biostatistics
Background:
- Traditional donor-recipient size matching relies on body weight.
- The effectiveness of various size matching metrics requires further investigation.
Purpose of the Study:
- To evaluate five size matching metrics: predicted heart mass (PHM), weight, height, BMI, and BSA.
- To determine the optimal metric for predicting 1-year mortality post-heart transplant.
- To assess the impact of size matching on donor heart discards.
Main Methods:
- Analysis of 19,168 adult heart transplant recipients from 2007-2016.
- Categorization of size match metrics into seven groups based on donor-recipient ratios.
- Construction of Cox proportional hazard models to assess 1-year mortality risk.
Main Results:
- Severely undersized donors by PHM (ratio 0.54-0.86) significantly increased mortality (HR 1.34).
- No increased mortality risk was observed for undersized donors based on weight, height, BMI, or BSA.
- 32% of size-rejected offers met PHM adequacy criteria; 14% of accepted offers were below the PHM threshold.
Conclusions:
- Predicted heart mass (PHM) is the superior metric for donor-recipient size matching in heart transplantation.
- Implementing PHM criteria can enhance donor heart utilization and improve post-transplant survival rates.
- Current size matching practices may lead to unnecessary donor heart discards and suboptimal recipient outcomes.
Background:
Donor-recipient size match is traditionally assessed by body weight. We assessed the ability of 5 size match metrics-predicted heart mass (PHM), weight, height, body mass index (BMI) and body surface area (BSA)-to predict 1-year mortality after heart transplant and to assess the effect of size match on donor heart turn down for size.
Methods:
The study cohort comprised 19,168 adult heart transplant recipients in the United Network for Organ Sharing registry between 2007 and 2016. Each size match metric was divided into 7 equally sized groups using the donor-recipient ratio for each metric. Single and multivariable Cox proportional hazard models for mortality 1 year after transplant were constructed.
Results:
Recipients in the severely (donor-recipient PHM ratio 0.54-0.86) undersized group for PHM experienced increased mortality, with a hazard ratio of 1.34 (95% confidence interval, 1.13-1.59; p < 0.001). There was no increased risk of death at 1 year if donors were undersized for weight, height, BMI, or BSA. We found that 32% of heart offers turned down for donor size would be acceptable using a PHM threshold of 0.86 or greater and that 14% of offers accepted (most of which are female donor to male recipient) were below this threshold.
Conclusions:
PHM is the optimal donor-recipient size match metric for prediction of mortality after heart transplant. Many offers turned down for donor size were above the threshold for adequacy of size match by PHM identified, and thus, the use of PHM could improve donor heart utilization and post-transplant survival.
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