CVAI Catalog

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11 models found

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9 public code

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8 public weights

ECG Scalogram-Phasogram Fusion CNN

Sapienza University of Rome · 2024

code

Training code public

CNN-based arrhythmia classifier that fuses the magnitude (scalogram) and phase (phasogram) of the continuous wavelet transform (CWT) of ECG heartbeats, rather than relying on magnitude information alone as most prior 2D-representation approaches do. Several fusion strategies (input-level, intermediate-layer, and output-level fusion) were compared on the public PhysioNet MIT-BIH Arrhythmia database. Despite a simple CNN architecture, the best fusion strategy achieved about 98.5% overall accuracy, 98.5% sensitivity and 95.6% specificity, competitive with more complex state-of-the-art approaches.

Single-lead ECG

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ECG

Multi-label classification

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Classification

CNN (2D)

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Convolutional (CNN)

Keras

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TensorFlow / Keras


Model ID: 0143

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Subject Count: 47

QTcNet

University of Muenster (Institute of Medical Informatics) · 2025

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Code & model weights public

Regression-based convolutional neural network that directly estimates the heart-rate-corrected QT interval (QTc) from a 12-lead ECG, aiming to improve on automated QTc measurements from commercial ECG systems, which often diverge from expert readings. QTcNet was trained on 120,300 algorithm-labeled ECGs from an internal hospital cohort and the public MIMIC-IV database (after correcting for a vendor-specific measurement bias), and evaluated against expert QTc measurements in three independent external cohorts (PTB Diagnostic ECG Database, QTcMS, and ECGRDVQ). It roughly halved the mean absolute error compared with standard ECG analysis software (from 23.4ms to 13.4ms across external validation cohorts), with explainability analysis confirming the model focuses on physiologically plausible QRS-onset and T-offset regions.

12-lead ECG

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ECG

Long QT syndrome (LQTS)

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Arrhythmia

Regression

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Regression

CNN (2D)

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Convolutional (CNN)

PyTorch

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PyTorch


Model ID: 0135

AIRE (AI-ECG Risk Estimation)

Imperial College London (Sau, Ng et al.) · 2024

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Code & model weights private

Multi-outcome AI-ECG risk-estimation platform that turns a single 12-lead ECG into a patient-specific survival curve, using a residual convolutional neural network trained with a discrete-time survival loss to predict not just risk but time-to-event. Beyond all-cause and cardiovascular mortality, separately fine-tuned heads predict future ventricular arrhythmia, complete heart block, atrial fibrillation, atherosclerotic cardiovascular disease, heart failure, and (in follow-up work) hypertension -- all from a single resting ECG, including in ECGs a cardiologist would read as normal. Derived on 1.16 million ECGs from 189,539 Beth Israel Deaconess Medical Center patients and externally validated across transnational cohorts in the USA, Brazil (CODE), and the UK (UK Biobank). A variational autoencoder and genome/phenome-wide association analyses were used to show the model's predictions track biologically plausible features (QRS morphology, LV structure/function, and loci linked to cardiac structure, QT interval, and biological aging). NHS trials of AIRE were planned for late 2025. No public code or model weights have been released.

12-lead ECG

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ECG

Mortality

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Prognosis & Aging

Atrial fibrillation

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Arrhythmia

Atherosclerotic cardiovascular disease (ASCVD) risk

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Prognosis & Aging

Heart failure

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Cardiac Function & Hemodynamics

Regression

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Regression

Binary classification

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Classification

CNN (1D)

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Convolutional (CNN)


Model ID: 0089

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Subject Count: 189,539

AnyPPG

Peking University (PKUDigitalHealth) · 2025

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Code & model weights public

ECG-guided photoplethysmography (PPG) foundation model pretrained on over 100,000 hours of synchronized PPG-ECG recordings from 58,796 subjects across five clinical and wearable sources, using a CLIP-style contrastive alignment framework so the PPG encoder inherits physiologically grounded structure from paired ECG. Achieves state-of-the-art performance on 13 of 15 conventional physiological-analysis tasks across eight datasets, and shows meaningful discriminative capability (AUC >= 0.70) for 307 ICD-10-coded phenotypes across 16 phecode chapters, including many non-cardiovascular conditions.

PPG / wearable

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PPG / Wearable

General Purpose / Multi-task

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General / Foundation

Atrial fibrillation

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Arrhythmia

Blood pressure estimation

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Cardiac Function & Hemodynamics

Embedding

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Representation Learning

Binary classification

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Classification

Regression

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Regression

CNN (1D)

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Convolutional (CNN)

PyTorch

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PyTorch


Model ID: 0067

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Subject Count: 58,796

DeepECG-SL

Montreal Heart Institute (HeartWise.AI) (Avram et al.) · EfficientNetV2 (supervised) · 2026

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Code & model weights public

Supervised EfficientNetV2-based 12-lead ECG model trained on over 1 million ECGs from the Montreal Heart Institute to predict 77 cardiac conditions derived from American Heart Association recommendations, plus fine-tuned digital-biomarker heads for reduced LVEF, 5-year atrial-fibrillation risk, and long-QT-syndrome (LQTS) detection/genotyping. Validated on 881,403 ECGs across 11 geographically diverse cohorts (4 public, 7 private health systems), achieving AUROCs above 0.98 for the 77-condition interpretation task while being 60x smaller and 29x faster at inference than its self-supervised DeepECG-SSL counterpart, with up to 9.7x lower CO2 emissions on equivalent tasks.

12-lead ECG

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ECG

General Purpose / Multi-task

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General / Foundation

LV systolic dysfunction (LVSD)

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Cardiac Function & Hemodynamics

Atrial fibrillation

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Arrhythmia

Long QT syndrome (LQTS)

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Arrhythmia

Multi-label classification

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Classification

Binary classification

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Classification

Multi-class classification

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Classification

CNN (2D)

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Convolutional (CNN)

PyTorch

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PyTorch

Apache 2.0

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Permissive


Model ID: 0070

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Subject Count: 184,210

DeepECG-SSL

Montreal Heart Institute (HeartWise.AI) (Avram et al.) · EfficientNetV2 (self-supervised) · 2026

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Code & model weights public

Self-supervised EfficientNetV2-based 12-lead ECG foundation model pretrained via contrastive learning and masked-lead modeling on 1.9 million ECGs (Montreal Heart Institute plus CODE-15% and MIMIC-IV), then fine-tuned for the same 77-condition ECG interpretation task and digital-biomarker extraction as DeepECG-SL. Outperforms the supervised counterpart on label-scarce digital-biomarker tasks, with the largest gains on LQTS genotype classification (AUROC 0.931 vs. 0.850, n=127 ECGs) and 5-year atrial-fibrillation risk (AUROC 0.742 vs. 0.734, n=132,050 ECGs), and outperforms ECG-FM and ECGFounder on shared external diagnostic classes.

12-lead ECG

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ECG

General Purpose / Multi-task

Filter by Disease / Trait:
General / Foundation

LV systolic dysfunction (LVSD)

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Cardiac Function & Hemodynamics

Atrial fibrillation

Filter by Disease / Trait:
Arrhythmia

Long QT syndrome (LQTS)

Filter by Disease / Trait:
Arrhythmia

Multi-label classification

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Classification

Binary classification

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Classification

Multi-class classification

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Classification

CNN (2D)

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Convolutional (CNN)

PyTorch

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PyTorch


Model ID: 0071

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Subject Count: 345,562

ECG-XPLAIM

National and Kapodistrian University of Athens / ETH Zurich (Pantelidis, Ruiperez-Campillo et al.) · 2025

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Code & model weights public

Explainable Inception-style 1D CNN for multi-label arrhythmia detection from 12-lead ECGs, integrating Grad-CAM visualization to highlight the waveform segments driving each prediction. Trained on MIMIC-IV-ECG and externally validated on PTB-XL across atrial fibrillation, sinus tachycardia, conduction disturbances (RBBB/LBBB/LAFB), long QT, Wolff-Parkinson-White pattern, and paced-rhythm detection, with all metrics exceeding 90% internally and strong generalization on external validation.

12-lead ECG

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ECG

Atrial fibrillation

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Arrhythmia

Multi-class classification

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Classification

Multi-label classification

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Classification

CNN (1D)

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Convolutional (CNN)

TensorFlow

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TensorFlow / Keras

CC BY 4.0

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Open — Attribution


Model ID: 0064

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Subject Count: 161,352

SiamQuality

Emory University / Georgia Institute of Technology / Duke University / UCSF (Ding, Guo, Chen, Lee, Rudin, Hu) · 2024

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Code & model weights private

Self-supervised foundation model for photoplethysmography (PPG) that explicitly targets the low-signal-quality problem endemic to real-world wearable and bedside PPG, rather than assuming clean input. A Siamese ResNet (SimSiam-style) encoder is pretrained to produce similar representations for temporally-adjacent high- and low-quality PPG segments presumed to share the same underlying physiological state, with curriculum learning that gradually increases the artifact-level gap between paired segments. Pretrained on over 36 million 30-second PPG pairs drawn from more than 24,100 UCSF ICU patients, then fine-tuned and evaluated on six downstream cardiovascular-monitoring datasets/tasks (heart rate, respiratory rate, blood pressure, and atrial-fibrillation detection), where it exceeds prior state-of-the-art by roughly 75% on respiratory-rate estimation and 5% on AF detection, with performance scaling with backbone depth (ResNet152 best). Code and the pretraining dataset are not public; the pretraining data is available upon request under a UCSF-Emory data use agreement.

PPG / wearable

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PPG / Wearable

Atrial fibrillation

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Arrhythmia

Blood pressure estimation

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Cardiac Function & Hemodynamics

Heart rate estimation

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Cardiac Function & Hemodynamics

Binary classification

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Classification

Regression

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Regression

CNN (1D)

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Convolutional (CNN)


Model ID: 0097

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Subject Count: 24,100

TolerantECG

FPT Software AI Center / University of Arkansas (Nguyen et al.) · 2025

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Code & model weights public

ECG foundation model designed to remain accurate when leads are missing or signals are noisy. A 1D ConvNeXt V2 encoder is trained with a dual-mode self-distillation objective (separate lead-missing and noise "teachers") alongside contrastive alignment to detailed diagnostic-criteria text reports retrieved via a lightweight, LLM-free "Cardiac Feature Retrieval" module. Consistently ranks best or second-best across PTB-XL diagnostic tasks and MIT-BIH arrhythmia classification under original, noisy, lead-missing, and combined-corruption conditions. Developed by FPT Software AI Center and the University of Arkansas.

12-lead ECG

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ECG

General Purpose / Multi-task

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General / Foundation

Multi-label classification

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Classification

Embedding

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Representation Learning

CNN (1D)

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Convolutional (CNN)

PyTorch

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PyTorch

CC BY-NC-SA 4.0

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Non-commercial / Research-only


Model ID: 0057

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Subject Count: 180,237

DeepBeat

Stanford University (Ashley Lab) · 2020

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Code & model weights public

Multi-task model that jointly assesses signal quality and detects atrial fibrillation from wrist-worn wearable photoplethysmography (PPG), pretrained on roughly one million simulated unlabeled signals before fine-tuning on labeled wearable data. Uses a 1D CNN with separate output heads for signal quality and arrhythmia detection. Developed by Stanford's Ashley Lab.

PPG / wearable

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PPG / Wearable

Atrial fibrillation

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Arrhythmia

Binary classification

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Classification

CNN (1D)

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Convolutional (CNN)

Keras

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TensorFlow / Keras

GPL 3.0

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Copyleft


Model ID: 0046

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Subject Count: 100

ECG2AF

Broad Institute (ML4H) · ecg2af_quintuplet_v2024_01_13 (updated 2025) · 2022

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Code & model weights public

Multi-task 12-lead ECG model with output heads for incident atrial-fibrillation risk (as a survival curve), incident mortality risk, prevalent AF classification, sex classification, and age regression. Built on a 1D CNN over the raw waveform, and developed by the Broad Institute's ML4H group as a successor to their ECG-AI model published in Circulation. Trained on ECGs from UK Biobank and Massachusetts General Hospital, neither of which is publicly released.

12-lead ECG

Filter by Modality:
ECG

Atrial fibrillation

Filter by Disease / Trait:
Arrhythmia

Mortality

Filter by Disease / Trait:
Prognosis & Aging

Multi-label classification

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Classification

CNN (1D)

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Convolutional (CNN)

TensorFlow

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TensorFlow / Keras

GPL 3.0

Filter by License:
Copyleft


Model ID: 0016

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Subject Count: 45,770