Alert button
Picture for David Robben

David Robben

Alert button

A Robust Ensemble Algorithm for Ischemic Stroke Lesion Segmentation: Generalizability and Clinical Utility Beyond the ISLES Challenge

Add code
Bookmark button
Alert button
Apr 03, 2024
Ezequiel de la Rosa, Mauricio Reyes, Sook-Lei Liew, Alexandre Hutton, Roland Wiest, Johannes Kaesmacher, Uta Hanning, Arsany Hakim, Richard Zubal, Waldo Valenzuela, David Robben, Diana M. Sima, Vincenzo Anania, Arne Brys, James A. Meakin, Anne Mickan, Gabriel Broocks, Christian Heitkamp, Shengbo Gao, Kongming Liang, Ziji Zhang, Md Mahfuzur Rahman Siddiquee, Andriy Myronenko, Pooya Ashtari, Sabine Van Huffel, Hyun-su Jeong, Chi-ho Yoon, Chulhong Kim, Jiayu Huo, Sebastien Ourselin, Rachel Sparks, Albert Clèrigues, Arnau Oliver, Xavier Lladó, Liam Chalcroft, Ioannis Pappas, Jeroen Bertels, Ewout Heylen, Juliette Moreau, Nima Hatami, Carole Frindel, Abdul Qayyum, Moona Mazher, Domenec Puig, Shao-Chieh Lin, Chun-Jung Juan, Tianxi Hu, Lyndon Boone, Maged Goubran, Yi-Jui Liu, Susanne Wegener, Florian Kofler, Ivan Ezhov, Suprosanna Shit, Moritz R. Hernandez Petzsche, Bjoern Menze, Jan S. Kirschke, Benedikt Wiestler

Figure 1 for A Robust Ensemble Algorithm for Ischemic Stroke Lesion Segmentation: Generalizability and Clinical Utility Beyond the ISLES Challenge
Figure 2 for A Robust Ensemble Algorithm for Ischemic Stroke Lesion Segmentation: Generalizability and Clinical Utility Beyond the ISLES Challenge
Figure 3 for A Robust Ensemble Algorithm for Ischemic Stroke Lesion Segmentation: Generalizability and Clinical Utility Beyond the ISLES Challenge
Figure 4 for A Robust Ensemble Algorithm for Ischemic Stroke Lesion Segmentation: Generalizability and Clinical Utility Beyond the ISLES Challenge
Viaarxiv icon

DeepVoxNet2: Yet another CNN framework

Add code
Bookmark button
Alert button
Nov 17, 2022
Jeroen Bertels, David Robben, Robin Lemmens, Dirk Vandermeulen

Viaarxiv icon

Convolutional neural networks for medical image segmentation

Add code
Bookmark button
Alert button
Nov 17, 2022
Jeroen Bertels, David Robben, Robin Lemmens, Dirk Vandermeulen

Figure 1 for Convolutional neural networks for medical image segmentation
Figure 2 for Convolutional neural networks for medical image segmentation
Figure 3 for Convolutional neural networks for medical image segmentation
Figure 4 for Convolutional neural networks for medical image segmentation
Viaarxiv icon

Final infarct prediction in acute ischemic stroke

Add code
Bookmark button
Alert button
Nov 09, 2022
Jeroen Bertels, David Robben, Dirk Vandermeulen, Robin Lemmens

Figure 1 for Final infarct prediction in acute ischemic stroke
Figure 2 for Final infarct prediction in acute ischemic stroke
Figure 3 for Final infarct prediction in acute ischemic stroke
Figure 4 for Final infarct prediction in acute ischemic stroke
Viaarxiv icon

Theoretical analysis and experimental validation of volume bias of soft Dice optimized segmentation maps in the context of inherent uncertainty

Add code
Bookmark button
Alert button
Nov 08, 2022
Jeroen Bertels, David Robben, Dirk Vandermeulen, Paul Suetens

Figure 1 for Theoretical analysis and experimental validation of volume bias of soft Dice optimized segmentation maps in the context of inherent uncertainty
Figure 2 for Theoretical analysis and experimental validation of volume bias of soft Dice optimized segmentation maps in the context of inherent uncertainty
Figure 3 for Theoretical analysis and experimental validation of volume bias of soft Dice optimized segmentation maps in the context of inherent uncertainty
Figure 4 for Theoretical analysis and experimental validation of volume bias of soft Dice optimized segmentation maps in the context of inherent uncertainty
Viaarxiv icon

The Dice loss in the context of missing or empty labels: Introducing $Φ$ and $ε$

Add code
Bookmark button
Alert button
Jul 19, 2022
Sofie Tilborghs, Jeroen Bertels, David Robben, Dirk Vandermeulen, Frederik Maes

Figure 1 for The Dice loss in the context of missing or empty labels: Introducing $Φ$ and $ε$
Figure 2 for The Dice loss in the context of missing or empty labels: Introducing $Φ$ and $ε$
Figure 3 for The Dice loss in the context of missing or empty labels: Introducing $Φ$ and $ε$
Figure 4 for The Dice loss in the context of missing or empty labels: Introducing $Φ$ and $ε$
Viaarxiv icon

ISLES 2022: A multi-center magnetic resonance imaging stroke lesion segmentation dataset

Add code
Bookmark button
Alert button
Jun 14, 2022
Moritz Roman Hernandez Petzsche, Ezequiel de la Rosa, Uta Hanning, Roland Wiest, Waldo Enrique Valenzuela Pinilla, Mauricio Reyes, Maria Ines Meyer, Sook-Lei Liew, Florian Kofler, Ivan Ezhov, David Robben, Alexander Hutton, Tassilo Friedrich, Teresa Zarth, Johannes Bürkle, The Anh Baran, Bjoern Menze, Gabriel Broocks, Lukas Meyer, Claus Zimmer, Tobias Boeckh-Behrens, Maria Berndt, Benno Ikenberg, Benedikt Wiestler, Jan S. Kirschke

Figure 1 for ISLES 2022: A multi-center magnetic resonance imaging stroke lesion segmentation dataset
Figure 2 for ISLES 2022: A multi-center magnetic resonance imaging stroke lesion segmentation dataset
Figure 3 for ISLES 2022: A multi-center magnetic resonance imaging stroke lesion segmentation dataset
Figure 4 for ISLES 2022: A multi-center magnetic resonance imaging stroke lesion segmentation dataset
Viaarxiv icon

Differentiable Deconvolution for Improved Stroke Perfusion Analysis

Add code
Bookmark button
Alert button
Mar 31, 2021
Ezequiel de la Rosa, David Robben, Diana M. Sima, Jan S. Kirschke, Bjoern Menze

Figure 1 for Differentiable Deconvolution for Improved Stroke Perfusion Analysis
Figure 2 for Differentiable Deconvolution for Improved Stroke Perfusion Analysis
Figure 3 for Differentiable Deconvolution for Improved Stroke Perfusion Analysis
Figure 4 for Differentiable Deconvolution for Improved Stroke Perfusion Analysis
Viaarxiv icon

Explainable-by-design Semi-Supervised Representation Learning for COVID-19 Diagnosis from CT Imaging

Add code
Bookmark button
Alert button
Dec 02, 2020
Abel Díaz Berenguer, Hichem Sahli, Boris Joukovsky, Maryna Kvasnytsia, Ine Dirks, Mitchel Alioscha-Perez, Nikos Deligiannis, Panagiotis Gonidakis, Sebastián Amador Sánchez, Redona Brahimetaj, Evgenia Papavasileiou, Jonathan Cheung-Wai Chana, Fei Li, Shangzhen Song, Yixin Yang, Sofie Tilborghs, Siri Willems, Tom Eelbode, Jeroen Bertels, Dirk Vandermeulen, Frederik Maes, Paul Suetens, Lucas Fidon, Tom Vercauteren, David Robben, Arne Brys, Dirk Smeets, Bart Ilsen, Nico Buls, Nina Watté, Johan de Mey, Annemiek Snoeckx, Paul M. Parizel, Julien Guiot, Louis Deprez, Paul Meunier, Stefaan Gryspeerdt, Kristof De Smet, Bart Jansen, Jef Vandemeulebroucke

Figure 1 for Explainable-by-design Semi-Supervised Representation Learning for COVID-19 Diagnosis from CT Imaging
Figure 2 for Explainable-by-design Semi-Supervised Representation Learning for COVID-19 Diagnosis from CT Imaging
Figure 3 for Explainable-by-design Semi-Supervised Representation Learning for COVID-19 Diagnosis from CT Imaging
Figure 4 for Explainable-by-design Semi-Supervised Representation Learning for COVID-19 Diagnosis from CT Imaging
Viaarxiv icon