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5 models found

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4 public code

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3 public weights

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Code & model weights public

Self-supervised multi-encoder autoencoder (MEAE) that separates heartbeat-related source signals from noisy photoplethysmogram (PPG) via blind source separation, improving heart-rate detection without requiring any pre-processing or manual data selection. Trained entirely on PPG signals from a large open polysomnography database (with no cleaning or curation), the model is then applied to a noisy real-world PPG dataset collected during daily activities of 9 subjects and a surgical dataset of 4,681 patients; the extracted heartbeat-related source signal significantly improves heart-rate detection accuracy compared with using the raw PPG signal directly.

PPG / wearable

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PPG / Wearable

Heart rate estimation

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Cardiac Function & Hemodynamics

Regression

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Regression

Hybrid

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Hybrid / Multi-branch

PyTorch

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PyTorch


Model ID: 0162

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

CSFM (Cardiac Sensing Foundation Model)

University of Oxford (Gu et al.) · 2026

code

Training code public

Multimodal cardiac-sensing foundation model pretrained with generative masked pretraining on ECG, PPG, and paired clinical/machine-generated text reports from roughly 1.7 million individuals across three large-scale critical-care and outpatient ECG datasets. A channel-embedding scheme lets the same model accept any combination of 12-lead ECG, single-lead/wearable ECG, and PPG. The resulting embeddings transfer to diagnostic classification, demographic recognition, vital-sign measurement, clinical-outcome prediction, and ECG question answering. Pretrained weights require a signed academic-access agreement rather than an open download.

12-lead ECG

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ECG

Single-lead ECG

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ECG

PPG / wearable

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PPG / Wearable

Clinical text

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Text & EHR

Multimodal

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Multimodal

General Purpose / Multi-task

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General / Foundation

Cardiac aging / biological age

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Prognosis & Aging

Embedding

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Representation Learning

Regression

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Regression

Transformer

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Transformer

PyTorch

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PyTorch


Model ID: 0058

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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

lock

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

PPG2ABP

BUET (Ibtehaz & Rahman) · 2020

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Code & model weights public

Translates a raw PPG waveform into a full continuous arterial blood-pressure waveform, from which systolic, diastolic, and mean arterial pressure are derived. Uses a two-stage cascaded 1D convolutional network in a U-Net style, with a coarse approximation stage followed by a refinement stage. Meets BHS Grade A and AAMI accuracy standards for diastolic and mean arterial pressure. Developed at BUET.

PPG / wearable

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PPG / Wearable

Blood pressure estimation

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Cardiac Function & Hemodynamics

Generation

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Generation

Regression

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Regression

CNN (1D)

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Convolutional (CNN)

Keras

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TensorFlow / Keras

MIT

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Permissive


Model ID: 0049