English

Interactive Volumetry Of Liver Ablation Zones

Computer Vision and Pattern Recognition 2015-12-16 v1 Graphics Human-Computer Interaction Medical Physics

Abstract

Percutaneous radiofrequency ablation (RFA) is a minimally invasive technique that destroys cancer cells by heat. The heat results from focusing energy in the radiofrequency spectrum through a needle. Amongst others, this can enable the treatment of patients who are not eligible for an open surgery. However, the possibility of recurrent liver cancer due to incomplete ablation of the tumor makes post-interventional monitoring via regular follow-up scans mandatory. These scans have to be carefully inspected for any conspicuousness. Within this study, the RF ablation zones from twelve post-interventional CT acquisitions have been segmented semi-automatically to support the visual inspection. An interactive, graph-based contouring approach, which prefers spherically shaped regions, has been applied. For the quantitative and qualitative analysis of the algorithm's results, manual slice-by-slice segmentations produced by clinical experts have been used as the gold standard (which have also been compared among each other). As evaluation metric for the statistical validation, the Dice Similarity Coefficient (DSC) has been calculated. The results show that the proposed tool provides lesion segmentation with sufficient accuracy much faster than manual segmentation. The visual feedback and interactivity make the proposed tool well suitable for the clinical workflow.

Keywords

Cite

@article{arxiv.1512.04582,
  title  = {Interactive Volumetry Of Liver Ablation Zones},
  author = {Jan Egger and Harald Busse and Philipp Brandmaier and Daniel Seider and Matthias Gawlitza and Steffen Strocka and Philip Voglreiter and Mark Dokter and Michael Hofmann and Bernhard Kainz and Alexander Hann and Xiaojun Chen and Tuomas Alhonnoro and Mika Pollari and Dieter Schmalstieg and Michael Moche},
  journal= {arXiv preprint arXiv:1512.04582},
  year   = {2015}
}

Comments

18 pages, 15 figures, 8 tables, 57 references