Alert button
Picture for Robbert W. van Hamersvelt

Robbert W. van Hamersvelt

Alert button

Deep Learning from Dual-Energy Information for Whole-Heart Segmentation in Dual-Energy and Single-Energy Non-Contrast-Enhanced Cardiac CT

Add code
Bookmark button
Alert button
Aug 10, 2020
Steffen Bruns, Jelmer M. Wolterink, Richard A. P. Takx, Robbert W. van Hamersvelt, Dominika Suchá, Max A. Viergever, Tim Leiner, Ivana Išgum

Figure 1 for Deep Learning from Dual-Energy Information for Whole-Heart Segmentation in Dual-Energy and Single-Energy Non-Contrast-Enhanced Cardiac CT
Figure 2 for Deep Learning from Dual-Energy Information for Whole-Heart Segmentation in Dual-Energy and Single-Energy Non-Contrast-Enhanced Cardiac CT
Figure 3 for Deep Learning from Dual-Energy Information for Whole-Heart Segmentation in Dual-Energy and Single-Energy Non-Contrast-Enhanced Cardiac CT
Figure 4 for Deep Learning from Dual-Energy Information for Whole-Heart Segmentation in Dual-Energy and Single-Energy Non-Contrast-Enhanced Cardiac CT
Viaarxiv icon

Combined analysis of coronary arteries and the left ventricular myocardium in cardiac CT angiography for detection of patients with functionally significant stenosis

Add code
Bookmark button
Alert button
Nov 10, 2019
Majd Zreik, Tim Leiner, Nadieh Khalili, Robbert W. van Hamersvelt, Jelmer M. Wolterink, Michiel Voskuil, Max A. Viergever, Ivana Išgum

Figure 1 for Combined analysis of coronary arteries and the left ventricular myocardium in cardiac CT angiography for detection of patients with functionally significant stenosis
Figure 2 for Combined analysis of coronary arteries and the left ventricular myocardium in cardiac CT angiography for detection of patients with functionally significant stenosis
Figure 3 for Combined analysis of coronary arteries and the left ventricular myocardium in cardiac CT angiography for detection of patients with functionally significant stenosis
Figure 4 for Combined analysis of coronary arteries and the left ventricular myocardium in cardiac CT angiography for detection of patients with functionally significant stenosis
Viaarxiv icon

Deep learning analysis of cardiac CT angiography for detection of coronary arteries with functionally significant stenosis

Add code
Bookmark button
Alert button
Jun 11, 2019
Majd Zreik, Robbert W. van Hamersvelt, Nadieh Khalili, Jelmer M. Wolterink, Michiel Voskuil, Max A. Viergever, Tim Leiner, Ivana Išgum

Figure 1 for Deep learning analysis of cardiac CT angiography for detection of coronary arteries with functionally significant stenosis
Figure 2 for Deep learning analysis of cardiac CT angiography for detection of coronary arteries with functionally significant stenosis
Figure 3 for Deep learning analysis of cardiac CT angiography for detection of coronary arteries with functionally significant stenosis
Figure 4 for Deep learning analysis of cardiac CT angiography for detection of coronary arteries with functionally significant stenosis
Viaarxiv icon

Coronary Artery Centerline Extraction in Cardiac CT Angiography Using a CNN-Based Orientation Classifier

Add code
Bookmark button
Alert button
Oct 24, 2018
Jelmer M. Wolterink, Robbert W. van Hamersvelt, Max A. Viergever, Tim Leiner, Ivana Išgum

Figure 1 for Coronary Artery Centerline Extraction in Cardiac CT Angiography Using a CNN-Based Orientation Classifier
Figure 2 for Coronary Artery Centerline Extraction in Cardiac CT Angiography Using a CNN-Based Orientation Classifier
Figure 3 for Coronary Artery Centerline Extraction in Cardiac CT Angiography Using a CNN-Based Orientation Classifier
Figure 4 for Coronary Artery Centerline Extraction in Cardiac CT Angiography Using a CNN-Based Orientation Classifier
Viaarxiv icon

Improving Myocardium Segmentation in Cardiac CT Angiography using Spectral Information

Add code
Bookmark button
Alert button
Sep 27, 2018
Steffen Bruns, Jelmer M. Wolterink, Robbert W. van Hamersvelt, Majd Zreik, Tim Leiner, Ivana Išgum

Figure 1 for Improving Myocardium Segmentation in Cardiac CT Angiography using Spectral Information
Figure 2 for Improving Myocardium Segmentation in Cardiac CT Angiography using Spectral Information
Figure 3 for Improving Myocardium Segmentation in Cardiac CT Angiography using Spectral Information
Viaarxiv icon

A Recurrent CNN for Automatic Detection and Classification of Coronary Artery Plaque and Stenosis in Coronary CT Angiography

Add code
Bookmark button
Alert button
Aug 20, 2018
Majd Zreik, Robbert W. van Hamersvelt, Jelmer M. Wolterink, Tim Leiner, Max A. Viergever, Ivana Isgum

Figure 1 for A Recurrent CNN for Automatic Detection and Classification of Coronary Artery Plaque and Stenosis in Coronary CT Angiography
Figure 2 for A Recurrent CNN for Automatic Detection and Classification of Coronary Artery Plaque and Stenosis in Coronary CT Angiography
Figure 3 for A Recurrent CNN for Automatic Detection and Classification of Coronary Artery Plaque and Stenosis in Coronary CT Angiography
Figure 4 for A Recurrent CNN for Automatic Detection and Classification of Coronary Artery Plaque and Stenosis in Coronary CT Angiography
Viaarxiv icon

Deep learning analysis of the myocardium in coronary CT angiography for identification of patients with functionally significant coronary artery stenosis

Add code
Bookmark button
Alert button
Dec 06, 2017
Majd Zreik, Nikolas Lessmann, Robbert W. van Hamersvelt, Jelmer M. Wolterink, Michiel Voskuil, Max A. Viergever, Tim Leiner, Ivana Išgum

Figure 1 for Deep learning analysis of the myocardium in coronary CT angiography for identification of patients with functionally significant coronary artery stenosis
Figure 2 for Deep learning analysis of the myocardium in coronary CT angiography for identification of patients with functionally significant coronary artery stenosis
Figure 3 for Deep learning analysis of the myocardium in coronary CT angiography for identification of patients with functionally significant coronary artery stenosis
Figure 4 for Deep learning analysis of the myocardium in coronary CT angiography for identification of patients with functionally significant coronary artery stenosis
Viaarxiv icon

Automatic Segmentation of the Left Ventricle in Cardiac CT Angiography Using Convolutional Neural Network

Add code
Bookmark button
Alert button
Apr 19, 2017
Majd Zreik, Tim Leiner, Bob D. de Vos, Robbert W. van Hamersvelt, Max A. Viergever, Ivana Isgum

Figure 1 for Automatic Segmentation of the Left Ventricle in Cardiac CT Angiography Using Convolutional Neural Network
Figure 2 for Automatic Segmentation of the Left Ventricle in Cardiac CT Angiography Using Convolutional Neural Network
Figure 3 for Automatic Segmentation of the Left Ventricle in Cardiac CT Angiography Using Convolutional Neural Network
Viaarxiv icon