English

clDice -- A Novel Topology-Preserving Loss Function for Tubular Structure Segmentation

Computer Vision and Pattern Recognition 2022-07-18 v7 Machine Learning Image and Video Processing

Abstract

Accurate segmentation of tubular, network-like structures, such as vessels, neurons, or roads, is relevant to many fields of research. For such structures, the topology is their most important characteristic; particularly preserving connectedness: in the case of vascular networks, missing a connected vessel entirely alters the blood-flow dynamics. We introduce a novel similarity measure termed centerlineDice (short clDice), which is calculated on the intersection of the segmentation masks and their (morphological) skeleta. We theoretically prove that clDice guarantees topology preservation up to homotopy equivalence for binary 2D and 3D segmentation. Extending this, we propose a computationally efficient, differentiable loss function (soft-clDice) for training arbitrary neural segmentation networks. We benchmark the soft-clDice loss on five public datasets, including vessels, roads and neurons (2D and 3D). Training on soft-clDice leads to segmentation with more accurate connectivity information, higher graph similarity, and better volumetric scores.

Keywords

Cite

@article{arxiv.2003.07311,
  title  = {clDice -- A Novel Topology-Preserving Loss Function for Tubular Structure Segmentation},
  author = {Suprosanna Shit and Johannes C. Paetzold and Anjany Sekuboyina and Ivan Ezhov and Alexander Unger and Andrey Zhylka and Josien P. W. Pluim and Ulrich Bauer and Bjoern H. Menze},
  journal= {arXiv preprint arXiv:2003.07311},
  year   = {2022}
}

Comments

* The authors Suprosanna Shit and Johannes C. Paetzold contributed equally to the work

R2 v1 2026-06-23T14:16:25.746Z