Learning from Scarce Labels: Multi-View Echocardiography for Ejection Fraction Prediction

September 02, 2026 Β· Grace Period Β· πŸ› Machine.Learning.for.Biomedical.Imaging. 2026 (2026)

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Authors Zhiyuan Gao, Dominic Yurk, Yaser S. Abu-Mostafa arXiv ID 2609.02969 Category eess.IV: Image & Video Processing Cross-listed cs.CV, cs.LG Citations 0 Venue Machine.Learning.for.Biomedical.Imaging. 2026 (2026)
Abstract
We present, to the best of our knowledge, the first publicly available resource for predicting left ventricular ejection fraction (EF) from parasternal long-axis (PLAX) echocardiography. Because no PLAX-EF datasets previously existed, our work focuses on an innovative data generation strategy to overcome this scarcity. By leveraging a time-based correlation between clinical notes and echocardiographic videos, combined with fine-tuning view classifiers and proxy labeling, we created a labeled dataset of over 25,000 PLAX videos. This enables us to train the first reproducible PLAX EF model, achieving a mean absolute error (MAE) of 6.86%. Given that apical four-chamber (A4C) methods, the clinical standard, report MAE values of 6%-7%, our results demonstrate that EF estimation from PLAX views is both feasible and clinically relevant. This surpasses the performance of existing methods and provides a clinically relevant solution for situations where apical views may not be feasible. Going further, we demonstrate that combining PLAX and A4C predictions via simple unweighted late fusion improves both single-view baselines to a 6.37% MAE, underscoring the value of multi-view integration. To promote continued research, we release the dataset labels, trained models, and runnable demos on GitHub, Hugging Face, and Google Colab: https://github.com/Jeffrey4899/PLAX_EF_Labels_202509
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