Picture for Coen de Vente

Coen de Vente

AIROGS: Artificial Intelligence for RObust Glaucoma Screening Challenge

Add code
Feb 10, 2023
Figure 1 for AIROGS: Artificial Intelligence for RObust Glaucoma Screening Challenge
Figure 2 for AIROGS: Artificial Intelligence for RObust Glaucoma Screening Challenge
Figure 3 for AIROGS: Artificial Intelligence for RObust Glaucoma Screening Challenge
Figure 4 for AIROGS: Artificial Intelligence for RObust Glaucoma Screening Challenge
Viaarxiv icon

Uncertainty-Aware Multiple-Instance Learning for Reliable Classification: Application to Optical Coherence Tomography

Feb 06, 2023
Figure 1 for Uncertainty-Aware Multiple-Instance Learning for Reliable Classification: Application to Optical Coherence Tomography
Figure 2 for Uncertainty-Aware Multiple-Instance Learning for Reliable Classification: Application to Optical Coherence Tomography
Figure 3 for Uncertainty-Aware Multiple-Instance Learning for Reliable Classification: Application to Optical Coherence Tomography
Figure 4 for Uncertainty-Aware Multiple-Instance Learning for Reliable Classification: Application to Optical Coherence Tomography
Viaarxiv icon

A deep learning framework for the detection and quantification of drusen and reticular pseudodrusen on optical coherence tomography

Add code
Apr 05, 2022
Figure 1 for A deep learning framework for the detection and quantification of drusen and reticular pseudodrusen on optical coherence tomography
Figure 2 for A deep learning framework for the detection and quantification of drusen and reticular pseudodrusen on optical coherence tomography
Figure 3 for A deep learning framework for the detection and quantification of drusen and reticular pseudodrusen on optical coherence tomography
Figure 4 for A deep learning framework for the detection and quantification of drusen and reticular pseudodrusen on optical coherence tomography
Viaarxiv icon

Improving Automated COVID-19 Grading with Convolutional Neural Networks in Computed Tomography Scans: An Ablation Study

Sep 21, 2020
Figure 1 for Improving Automated COVID-19 Grading with Convolutional Neural Networks in Computed Tomography Scans: An Ablation Study
Figure 2 for Improving Automated COVID-19 Grading with Convolutional Neural Networks in Computed Tomography Scans: An Ablation Study
Figure 3 for Improving Automated COVID-19 Grading with Convolutional Neural Networks in Computed Tomography Scans: An Ablation Study
Figure 4 for Improving Automated COVID-19 Grading with Convolutional Neural Networks in Computed Tomography Scans: An Ablation Study
Viaarxiv icon

A Global Benchmark of Algorithms for Segmenting Late Gadolinium-Enhanced Cardiac Magnetic Resonance Imaging

May 07, 2020
Figure 1 for A Global Benchmark of Algorithms for Segmenting Late Gadolinium-Enhanced Cardiac Magnetic Resonance Imaging
Figure 2 for A Global Benchmark of Algorithms for Segmenting Late Gadolinium-Enhanced Cardiac Magnetic Resonance Imaging
Figure 3 for A Global Benchmark of Algorithms for Segmenting Late Gadolinium-Enhanced Cardiac Magnetic Resonance Imaging
Figure 4 for A Global Benchmark of Algorithms for Segmenting Late Gadolinium-Enhanced Cardiac Magnetic Resonance Imaging
Viaarxiv icon