Alert button
Picture for Nick Byrne

Nick Byrne

Alert button

A persistent homology-based topological loss for CNN-based multi-class segmentation of CMR

Add code
Bookmark button
Alert button
Jul 27, 2021
Nick Byrne, James R Clough, Isra Valverde, Giovanni Montana, Andrew P King

Figure 1 for A persistent homology-based topological loss for CNN-based multi-class segmentation of CMR
Figure 2 for A persistent homology-based topological loss for CNN-based multi-class segmentation of CMR
Figure 3 for A persistent homology-based topological loss for CNN-based multi-class segmentation of CMR
Figure 4 for A persistent homology-based topological loss for CNN-based multi-class segmentation of CMR
Viaarxiv icon

A persistent homology-based topological loss function for multi-class CNN segmentation of cardiac MRI

Add code
Bookmark button
Alert button
Aug 21, 2020
Nick Byrne, James R. Clough, Giovanni Montana, Andrew P. King

Figure 1 for A persistent homology-based topological loss function for multi-class CNN segmentation of cardiac MRI
Figure 2 for A persistent homology-based topological loss function for multi-class CNN segmentation of cardiac MRI
Figure 3 for A persistent homology-based topological loss function for multi-class CNN segmentation of cardiac MRI
Figure 4 for A persistent homology-based topological loss function for multi-class CNN segmentation of cardiac MRI
Viaarxiv icon

Topology-preserving augmentation for CNN-based segmentation of congenital heart defects from 3D paediatric CMR

Add code
Bookmark button
Alert button
Aug 23, 2019
Nick Byrne, James R. Clough, Isra Valverde, Giovanni Montana, Andrew P. King

Figure 1 for Topology-preserving augmentation for CNN-based segmentation of congenital heart defects from 3D paediatric CMR
Figure 2 for Topology-preserving augmentation for CNN-based segmentation of congenital heart defects from 3D paediatric CMR
Figure 3 for Topology-preserving augmentation for CNN-based segmentation of congenital heart defects from 3D paediatric CMR
Figure 4 for Topology-preserving augmentation for CNN-based segmentation of congenital heart defects from 3D paediatric CMR
Viaarxiv icon