Alert button
Picture for Ivo Wolf

Ivo Wolf

Alert button

Anatomy-informed Data Augmentation for Enhanced Prostate Cancer Detection

Add code
Bookmark button
Alert button
Sep 07, 2023
Balint Kovacs, Nils Netzer, Michael Baumgartner, Carolin Eith, Dimitrios Bounias, Clara Meinzer, Paul F. Jaeger, Kevin S. Zhang, Ralf Floca, Adrian Schrader, Fabian Isensee, Regula Gnirs, Magdalena Goertz, Viktoria Schuetz, Albrecht Stenzinger, Markus Hohenfellner, Heinz-Peter Schlemmer, Ivo Wolf, David Bonekamp, Klaus H. Maier-Hein

Figure 1 for Anatomy-informed Data Augmentation for Enhanced Prostate Cancer Detection
Figure 2 for Anatomy-informed Data Augmentation for Enhanced Prostate Cancer Detection
Figure 3 for Anatomy-informed Data Augmentation for Enhanced Prostate Cancer Detection
Figure 4 for Anatomy-informed Data Augmentation for Enhanced Prostate Cancer Detection
Viaarxiv icon

Surgical Phase and Instrument Recognition: How to identify appropriate Dataset Splits

Add code
Bookmark button
Alert button
Jun 29, 2023
Georgii Kostiuchik, Lalith Sharan, Benedikt Mayer, Ivo Wolf, Bernhard Preim, Sandy Engelhardt

Figure 1 for Surgical Phase and Instrument Recognition: How to identify appropriate Dataset Splits
Figure 2 for Surgical Phase and Instrument Recognition: How to identify appropriate Dataset Splits
Figure 3 for Surgical Phase and Instrument Recognition: How to identify appropriate Dataset Splits
Figure 4 for Surgical Phase and Instrument Recognition: How to identify appropriate Dataset Splits
Viaarxiv icon

Comparison of Depth Estimation Setups from Stereo Endoscopy and Optical Tracking for Point Measurements

Add code
Bookmark button
Alert button
Jan 26, 2022
Lukas Burger, Lalith Sharan, Samantha Fischer, Julian Brand, Maximillian Hehl, Gabriele Romano, Matthias Karck, Raffaele De Simone, Ivo Wolf, Sandy Engelhardt

Figure 1 for Comparison of Depth Estimation Setups from Stereo Endoscopy and Optical Tracking for Point Measurements
Figure 2 for Comparison of Depth Estimation Setups from Stereo Endoscopy and Optical Tracking for Point Measurements
Figure 3 for Comparison of Depth Estimation Setups from Stereo Endoscopy and Optical Tracking for Point Measurements
Viaarxiv icon

Unsupervised Domain Adaptation from Axial to Short-Axis Multi-Slice Cardiac MR Images by Incorporating Pretrained Task Networks

Add code
Bookmark button
Alert button
Jan 20, 2021
Sven Koehler, Tarique Hussain, Zach Blair, Tyler Huffaker, Florian Ritzmann, Animesh Tandon, Thomas Pickardt, Samir Sarikouch, Heiner Latus, Gerald Greil, Ivo Wolf, Sandy Engelhardt

Figure 1 for Unsupervised Domain Adaptation from Axial to Short-Axis Multi-Slice Cardiac MR Images by Incorporating Pretrained Task Networks
Figure 2 for Unsupervised Domain Adaptation from Axial to Short-Axis Multi-Slice Cardiac MR Images by Incorporating Pretrained Task Networks
Figure 3 for Unsupervised Domain Adaptation from Axial to Short-Axis Multi-Slice Cardiac MR Images by Incorporating Pretrained Task Networks
Figure 4 for Unsupervised Domain Adaptation from Axial to Short-Axis Multi-Slice Cardiac MR Images by Incorporating Pretrained Task Networks
Viaarxiv icon

Unsupervised Domain Adaptation from Axial toShort-Axis Multi-Slice Cardiac MR Images byIncorporating Pretrained Task Networks

Add code
Bookmark button
Alert button
Jan 19, 2021
Sven Koehler, Tarique Hussain, Zach Blair, Tyler Huffaker, Florian Ritzmann, Animesh Tandon, Thomas Pickardt, Samir Sarikouch, Heiner Latus, Gerald Greil, Ivo Wolf, Sandy Engelhardt

Figure 1 for Unsupervised Domain Adaptation from Axial toShort-Axis Multi-Slice Cardiac MR Images byIncorporating Pretrained Task Networks
Figure 2 for Unsupervised Domain Adaptation from Axial toShort-Axis Multi-Slice Cardiac MR Images byIncorporating Pretrained Task Networks
Figure 3 for Unsupervised Domain Adaptation from Axial toShort-Axis Multi-Slice Cardiac MR Images byIncorporating Pretrained Task Networks
Figure 4 for Unsupervised Domain Adaptation from Axial toShort-Axis Multi-Slice Cardiac MR Images byIncorporating Pretrained Task Networks
Viaarxiv icon

Heatmap-based 2D Landmark Detection with a Varying Number of Landmarks

Add code
Bookmark button
Alert button
Jan 07, 2021
Antonia Stern, Lalith Sharan, Gabriele Romano, Sven Koehler, Matthias Karck, Raffaele De Simone, Ivo Wolf, Sandy Engelhardt

Figure 1 for Heatmap-based 2D Landmark Detection with a Varying Number of Landmarks
Figure 2 for Heatmap-based 2D Landmark Detection with a Varying Number of Landmarks
Figure 3 for Heatmap-based 2D Landmark Detection with a Varying Number of Landmarks
Viaarxiv icon

How well do U-Net-based segmentation trained on adult cardiac magnetic resonance imaging data generalise to rare congenital heart diseases for surgical planning?

Add code
Bookmark button
Alert button
Feb 10, 2020
Sven Koehler, Animesh Tandon, Tarique Hussain, Heiner Latus, Thomas Pickardt, Samir Sarikouch, Philipp Beerbaum, Gerald Greil, Sandy Engelhardt, Ivo Wolf

Figure 1 for How well do U-Net-based segmentation trained on adult cardiac magnetic resonance imaging data generalise to rare congenital heart diseases for surgical planning?
Figure 2 for How well do U-Net-based segmentation trained on adult cardiac magnetic resonance imaging data generalise to rare congenital heart diseases for surgical planning?
Figure 3 for How well do U-Net-based segmentation trained on adult cardiac magnetic resonance imaging data generalise to rare congenital heart diseases for surgical planning?
Figure 4 for How well do U-Net-based segmentation trained on adult cardiac magnetic resonance imaging data generalise to rare congenital heart diseases for surgical planning?
Viaarxiv icon

Cross-Domain Conditional Generative Adversarial Networks for Stereoscopic Hyperrealism in Surgical Training

Add code
Bookmark button
Alert button
Jun 24, 2019
Sandy Engelhardt, Lalith Sharan, Matthias Karck, Raffaele De Simone, Ivo Wolf

Figure 1 for Cross-Domain Conditional Generative Adversarial Networks for Stereoscopic Hyperrealism in Surgical Training
Figure 2 for Cross-Domain Conditional Generative Adversarial Networks for Stereoscopic Hyperrealism in Surgical Training
Figure 3 for Cross-Domain Conditional Generative Adversarial Networks for Stereoscopic Hyperrealism in Surgical Training
Figure 4 for Cross-Domain Conditional Generative Adversarial Networks for Stereoscopic Hyperrealism in Surgical Training
Viaarxiv icon

Automatic Cardiac Disease Assessment on cine-MRI via Time-Series Segmentation and Domain Specific Features

Add code
Bookmark button
Alert button
Jan 25, 2018
Fabian Isensee, Paul Jaeger, Peter M. Full, Ivo Wolf, Sandy Engelhardt, Klaus H. Maier-Hein

Figure 1 for Automatic Cardiac Disease Assessment on cine-MRI via Time-Series Segmentation and Domain Specific Features
Figure 2 for Automatic Cardiac Disease Assessment on cine-MRI via Time-Series Segmentation and Domain Specific Features
Figure 3 for Automatic Cardiac Disease Assessment on cine-MRI via Time-Series Segmentation and Domain Specific Features
Figure 4 for Automatic Cardiac Disease Assessment on cine-MRI via Time-Series Segmentation and Domain Specific Features
Viaarxiv icon