Abstract:
Pulmonary vessels extraction is of utmost importance in medical study. In this paper, we propose a new scheme to extract pulmonary vessels in CT images based on the level...Show MoreMetadata
Abstract:
Pulmonary vessels extraction is of utmost importance in medical study. In this paper, we propose a new scheme to extract pulmonary vessels in CT images based on the level set method. A new region based speed function is designed and integrated with the previous edge based terms to evolve the front. Due to this region based speed term, the front could propagate even in thin vessel branches. The level set evolution is performed on a multiscale space where a new solution passing method is proposed that could induce a fast convergence rate. Meanwhile, an improved Hermes algorithm, we call it fast Hermes, is developed to evolve the level set evolution numerically. Experiments show that the segmentation results using our approach, especially in thin vessel branches extraction, are more promising than that of the usual level set method for segmentation.
Date of Conference: 14-17 September 2003
Date Added to IEEE Xplore: 24 November 2003
Print ISBN:0-7803-7750-8
Print ISSN: 1522-4880
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Pulmonary Circulation ,
- Level Set Method ,
- Vessel Extraction ,
- Segmentation Results ,
- Usual Method ,
- Thin Branches ,
- Thin Vessels ,
- Image Segmentation ,
- Equations Of Motion ,
- Fine Scale ,
- Phase Velocity ,
- Fast Algorithm ,
- Interesting Class ,
- Usual Approach ,
- Conditional Entropy ,
- Signed Distance Function ,
- Front Propagation ,
- Narrow Vessels
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Pulmonary Circulation ,
- Level Set Method ,
- Vessel Extraction ,
- Segmentation Results ,
- Usual Method ,
- Thin Branches ,
- Thin Vessels ,
- Image Segmentation ,
- Equations Of Motion ,
- Fine Scale ,
- Phase Velocity ,
- Fast Algorithm ,
- Interesting Class ,
- Usual Approach ,
- Conditional Entropy ,
- Signed Distance Function ,
- Front Propagation ,
- Narrow Vessels