Alert button
Picture for Pierre-Marc Jodoin

Pierre-Marc Jodoin

Alert button

MYRIAD

TractOracle: towards an anatomically-informed reward function for RL-based tractography

Add code
Bookmark button
Alert button
Mar 26, 2024
Antoine Théberge, Maxime Descoteaux, Pierre-Marc Jodoin

Viaarxiv icon

Fusing Echocardiography Images and Medical Records for Continuous Patient Stratification

Add code
Bookmark button
Alert button
Jan 15, 2024
Nathan Painchaud, Pierre-Yves Courand, Pierre-Marc Jodoin, Nicolas Duchateau, Olivier Bernard

Viaarxiv icon

Merging multiple input descriptors and supervisors in a deep neural network for tractogram filtering

Add code
Bookmark button
Alert button
Jul 11, 2023
Daniel Jörgens, Pierre-Marc Jodoin, Maxime Descoteaux, Rodrigo Moreno

Figure 1 for Merging multiple input descriptors and supervisors in a deep neural network for tractogram filtering
Figure 2 for Merging multiple input descriptors and supervisors in a deep neural network for tractogram filtering
Figure 3 for Merging multiple input descriptors and supervisors in a deep neural network for tractogram filtering
Figure 4 for Merging multiple input descriptors and supervisors in a deep neural network for tractogram filtering
Viaarxiv icon

Mixup-Privacy: A simple yet effective approach for privacy-preserving segmentation

Add code
Bookmark button
Alert button
May 23, 2023
Bach Kim, Jose Dolz, Pierre-Marc Jodoin, Christian Desrosiers

Figure 1 for Mixup-Privacy: A simple yet effective approach for privacy-preserving segmentation
Figure 2 for Mixup-Privacy: A simple yet effective approach for privacy-preserving segmentation
Figure 3 for Mixup-Privacy: A simple yet effective approach for privacy-preserving segmentation
Figure 4 for Mixup-Privacy: A simple yet effective approach for privacy-preserving segmentation
Viaarxiv icon

What Matters in Reinforcement Learning for Tractography

Add code
Bookmark button
Alert button
May 17, 2023
Antoine Théberge, Christian Desrosiers, Maxime Descoteaux, Pierre-Marc Jodoin

Figure 1 for What Matters in Reinforcement Learning for Tractography
Figure 2 for What Matters in Reinforcement Learning for Tractography
Figure 3 for What Matters in Reinforcement Learning for Tractography
Figure 4 for What Matters in Reinforcement Learning for Tractography
Viaarxiv icon

Extraction of volumetric indices from echocardiography: which deep learning solution for clinical use?

Add code
Bookmark button
Alert button
May 08, 2023
Hang Jung Ling, Nathan Painchaud, Pierre-Yves Courand, Pierre-Marc Jodoin, Damien Garcia, Olivier Bernard

Viaarxiv icon

FIESTA: Autoencoders for accurate fiber segmentation in tractography

Add code
Bookmark button
Alert button
Dec 12, 2022
Félix Dumais, Jon Haitz Legarreta, Carl Lemaire, Philippe Poulin, François Rheault, Laurent Petit, Maxime Descoteaux, Pierre-Marc Jodoin

Figure 1 for FIESTA: Autoencoders for accurate fiber segmentation in tractography
Figure 2 for FIESTA: Autoencoders for accurate fiber segmentation in tractography
Figure 3 for FIESTA: Autoencoders for accurate fiber segmentation in tractography
Figure 4 for FIESTA: Autoencoders for accurate fiber segmentation in tractography
Viaarxiv icon

FIESTA: FIber gEneration and bundle Segmentation in Tractography using Autoencoders

Add code
Bookmark button
Alert button
Nov 30, 2022
Félix Dumais, Jon Haitz Legarreta, Carl Lemaire, Philippe Poulin, François Rheault, Laurent Petit, Maxime Descoteaux, Pierre-Marc Jodoin

Figure 1 for FIESTA: FIber gEneration and bundle Segmentation in Tractography using Autoencoders
Figure 2 for FIESTA: FIber gEneration and bundle Segmentation in Tractography using Autoencoders
Figure 3 for FIESTA: FIber gEneration and bundle Segmentation in Tractography using Autoencoders
Figure 4 for FIESTA: FIber gEneration and bundle Segmentation in Tractography using Autoencoders
Viaarxiv icon

ProstAttention-Net: A deep attention model for prostate cancer segmentation by aggressiveness in MRI scans

Add code
Bookmark button
Alert button
Nov 23, 2022
Audrey Duran, Gaspard Dussert, Olivier Rouvière, Tristan Jaouen, Pierre-Marc Jodoin, Carole Lartizien

Figure 1 for ProstAttention-Net: A deep attention model for prostate cancer segmentation by aggressiveness in MRI scans
Figure 2 for ProstAttention-Net: A deep attention model for prostate cancer segmentation by aggressiveness in MRI scans
Figure 3 for ProstAttention-Net: A deep attention model for prostate cancer segmentation by aggressiveness in MRI scans
Figure 4 for ProstAttention-Net: A deep attention model for prostate cancer segmentation by aggressiveness in MRI scans
Viaarxiv icon