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4 models found

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4 public code

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1 public weights

CardioLab

Carl von Ossietzky Universitat Oldenburg (AI4Health Division) (Lopez Alcaraz, Strodthoff) · 2024

code

Training code public

Multimodal deep-learning framework that estimates and forecasts abnormal laboratory values directly from a 12-lead ECG plus routinely available demographics, biometrics, and vital signs -- reframing dozens of blood tests as binary classification targets predictable from a test that is already fast, non-invasive, and nearly universal in acute care. A structured state-space (S4) encoder processes the raw ECG waveform and is late-fused with an MLP encoder over the tabular metadata; the same architecture is trained both to estimate the closest lab value within 60 minutes of the ECG ('abnormality prediction') and to forecast whether a value will become abnormal 30/60/120 minutes into the future ('abnormality forecasting'). Trained and evaluated on 385,480 linked ECG-lab-value samples from 127,994 MIMIC-IV patients, the model reaches AUROC > 0.7 for 24 distinct lab abnormalities in the prediction setting and 24 in the forecasting setting, spanning cardiac, renal, hematological, metabolic, immunological, and coagulation categories -- with NT-proBNP elevation the best-predicted marker (AUROC 0.90), followed by hemoglobin, albumin, and hematocrit derangements (AUROC > 0.82). Code for dataset construction, training, and evaluation is public under an MIT license; no pretrained model weights are released.

12-lead ECG

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ECG

Structured EHR

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Text & EHR

Laboratory / biomarker value estimation

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Other Conditions

Binary classification

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Classification

CNN (1D)

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Convolutional (CNN)

PyTorch

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PyTorch


Model ID: 0100

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Subject Count: 127,994

xECG

Medical University of Innsbruck (Dlaska Lab) · base_model_v1 · 2025

graph_1

Code & model weights public

ECG foundation model built on the xLSTM (extended LSTM) architecture: a bidirectional stack of nine alternating scalar- and matrix-memory LSTM blocks that scales linearly with sequence length, unlike the quadratic cost of transformer-based ECG models. Pretrained with SimDINOv2, a coding-rate-regularized self-distillation (DINO) objective adapted from computer vision to ECG time series, on roughly 8 million recordings from CODE, INCART, and Chapman-Shaoxing-Ningbo. Introduced alongside BenchECG, a standardized 8-dataset/10-task benchmark, on which xECG achieves the best average rank of any publicly available ECG foundation model, with particular strength on long-context tasks (30-minute ambulatory arrhythmia classification, multi-hour sleep-apnea segmentation) where transformer-based models are computationally limited.

12-lead ECG

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ECG

General Purpose / Multi-task

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General / Foundation

Sleep apnea

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Other Conditions

Multi-label classification

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Classification

Binary classification

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Classification

Embedding

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Representation Learning

RNN / LSTM / GRU

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Recurrent

PyTorch

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PyTorch

MIT

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Permissive


Model ID: 0063

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Subject Count: 45,184

EchoNet-Labs

Stanford University / Cedars-Sinai Medical Center (Ouyang Lab) · 2021

code

Training code public

Video-based deep learning model that estimates 14 common blood biomarkers and laboratory values—including hemoglobin (anemia), B-type natriuretic peptide (BNP), troponin I, and blood urea nitrogen (BUN)—directly from apical-4-chamber echocardiogram videos. Built on a spatiotemporal convolutional network (R(2+1)D-style) with residual connections that produces beat-by-beat estimates for both regression and abnormality classification. Trained on over 70,000 echocardiograms from Stanford Healthcare and externally validated at Cedars-Sinai, reaching AUCs around 0.80–0.86 for detecting anemia and elevated BNP. Developed by the Ouyang and Zou labs at Stanford University and Cedars-Sinai.

Echocardiography video

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Echocardiography

Laboratory / biomarker value estimation

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Other Conditions

Regression

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Regression

Binary classification

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Classification

CNN (3D)

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Convolutional (CNN)

PyTorch

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PyTorch


Model ID: 0052

Ahus AIM Chagas ECG model

Akershus University Hospital / University of Oslo (Stenhede, Ranjbar) · 2026

code

Training code public

Screens 12-lead ECGs for Chagas cardiomyopathy by first pretraining a feature extractor to predict blood-biomarker levels from MIMIC-IV-ECG data, then fine-tuning on Brazilian CODE-15%, SaMi-Trop, and PTB-XL recordings; the final model is a 5-model ensemble. Submitted to the George B. Moody PhysioNet Challenge 2025 (Detection of Chagas Disease from the ECG), where it placed 5th on the official leaderboard. Developed by a team from Akershus University Hospital and the University of Oslo.

12-lead ECG

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ECG

Chagas disease

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Other Conditions

Binary classification

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Classification

CNN (1D)

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Convolutional (CNN)

PyTorch

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PyTorch


Model ID: 0012

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Subject Count: 1,631