A hybrid 3D segmentation approach for vasculatures of CTA images

Jing Guo*, Tao Yang, Qin Li, Jian Yang, Yifan Huang

*Corresponding author for this work

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

A hybrid 3D segmentation approach for extracting vascular structures of CTA (computed tomographic angiography) scans is presented. In order to remove large amount of granular noises which are commonly exist in CTA images, repetition median filters are employed to smooth the 3D data. Compared to the well performed Vessel Enhancing Diffusion method [1], the adopted method is more fast, robust, easy to operate, and reproducible. Then, the vascular structure is enhanced by sigmoid filter which converts the vascular intensity distribution to a new level. After that, 3D region growing method is selected to get raw segmentation results. Based on the obtained rough vasculatures, Geodesic Active Contour Level Set algorithm is adopted to refine the segmentation results for its good performance of solving segmentation leakage. Finally, the vascular surface is reconstructed by Marching Cubes and smoothed by Laplacian filter. Experiments show that the developed method can obtain good segmentation vasculature from CTA images.

Original languageEnglish
Title of host publication2010 IEEE/ICME International Conference on Complex Medical Engineering, CME2010
Pages301-305
Number of pages5
DOIs
Publication statusPublished - 2010
Event2010 IEEE/ICME International Conference on Complex Medical Engineering, CME2010 - Gold Coast, QLD, Australia
Duration: 13 Jul 201015 Jul 2010

Publication series

Name2010 IEEE/ICME International Conference on Complex Medical Engineering, CME2010

Conference

Conference2010 IEEE/ICME International Conference on Complex Medical Engineering, CME2010
Country/TerritoryAustralia
CityGold Coast, QLD
Period13/07/1015/07/10

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Guo, J., Yang, T., Li, Q., Yang, J., & Huang, Y. (2010). A hybrid 3D segmentation approach for vasculatures of CTA images. In 2010 IEEE/ICME International Conference on Complex Medical Engineering, CME2010 (pp. 301-305). Article 5558826 (2010 IEEE/ICME International Conference on Complex Medical Engineering, CME2010). https://doi.org/10.1109/ICCME.2010.5558826