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EchoNet-CMR

Cedars-Sinai Medical Center (Smidt Heart Institute) / Ouyang Lab

Echocardiography video

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Echocardiography

LGE scar burden

Filter catalog by Disease / Trait:
Structural Heart & Cardiomyopathy

Structural heart disease (composite)

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Structural Heart & Cardiomyopathy

Binary classification

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Classification

CNN (3D)

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Convolutional (CNN)

PyTorch

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PyTorch

Research use only

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Non-commercial / Research-only

Predicts cardiac MRI (CMR) tissue-characterization findings -- wall-motion abnormalities and myocardial scar -- directly from standard transthoracic echocardiography videos (A4C/A2C/PLAX views), using a factorized 3D R2+1D convolutional network. Trained and validated on a single-institution cohort of more than 1,400 patients with paired echo and CMR studies within 30 days of each other. Released weights and inference code cover the two binarized outcomes (wall motion, scar); the continuous CMR tissue markers (native T1, T2, ECV) evaluated in the paper are not part of the public release.

memory Specifications

category

Architecture

CNN (3D)

R2+1D 3D-CNN (factorized spatial + temporal convolutions) applied to A4C/A2C/PLAX echocardiography video clips

code

Framework

PyTorch

calendar_month

Added to catalog

2026-08-10

gavel License

Research use only

License for model weights only. Associated code may be licensed seperately, check code source for specific terms.

description Publication

database Training & evaluation data

Cedars-Sinai Medical Center Echocardiography Dataset

train

USA · 2011-2023

CSMC (Cedars-Sinai Medical Center) clinical echocardiography cohort: 877,983 individual sonographer measurements spanning 9 B-mode and 9 Doppler measurement types, drawn from 155,215 studies.

science Capabilities & performance

Myocardial scar presence, predicted from echo (CMR-confirmed label)

Binary classification LGE scar burden

Wall motion abnormality presence, predicted from echo (CMR-confirmed label)

Binary classification Structural heart disease (composite)