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Research Article

Automatic segmentation of arterial tree from 3D computed tomographic pulmonary angiography (CTPA) scans

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References

  • Zhu X, Xue Z, Gao X, et al. VOLES: Vascularity-oriented level set algorithm for pulmonary vessel segmentation in image guided intervention therapy. Proceedings of the 2009 IEEE International Symposium on Biomedical Imaging: From Nano to Macro; 2009. June 28 - July 1; Boston, MA, USA.
  • Payer C, Pienn M, Bálint Z, et al. Automated integer programming based separation of arteries and veins from thoracic CT images. Med Image Anal. 2016;34:109–122.
  • Park S, Lee SM, Kim N, et al. Automatic reconstruction of the arterial and venous trees on volumetric chest CT. Med Phys. 2013;40:071906.
  • Szenasi S. Segmentation of colon tissue sample images using multiple graphics accelerators. Comput Biol Med. 2014;51:93–103.
  • Remenyi A, Szenasi S, Bandi I, et al. Parallel biomedical image processing with GPGPU-s in cancer research. IEEE International Symposium on Logistics & Industrial Informatics (LINDI 2011); 2011 Aug 25–27; Budapest, Hungary.
  • Jin D, Iyer KS, Hoffman EA, et al. Automated assessment of pulmonary arterial morphology in multi-row detector CT imaging using correspondence with anatomic airway branches. 10th International Symposium on Visual Computing (ISVC); 2014. Dec. 8-10; Las Vegas, Nevada, USA.
  • Saha PK, Gao Z, Alford SK, et al. Topomorphologic separation of fused isointensity objects via multiscale opening: separating arteries and veins in 3-D pulmonary CT. IEEE T Med Imaging. 2010;29:840–851.
  • Zhao B, Cao Z, Wang S. Lung vessel segmentation based on random forests. Electron Lett. 2017;53:220–222.
  • Taha A, Lo P, Li J, et al. Kid-Net: Convolution Networks for Kidney Vessels Segmentation from CT-Volumes. International Conference on Medical Image Computing and Computer-Assisted Intervention (MICCAI 2018); 2018 Sep 16–20; Granada, Spain.
  • Helmberger M, Urschler M, Pienn M, et al. Pulmonary vascular tree segmentation from contrast-enhanced CT images. Workshop of the Austrian Association for Pattern Recognition; 2013 May 23-24; Innsbruck, Austria.
  • Zhou C, Chan HP, Sahiner B, et al. Automatic multiscale enhancement and segmentation of pulmonary vessels in CT pulmonary angiography images for CAD applications. Med Phys. 2007;34:4567–4577.
  • Das A, Ghoshal D. Human eye detection of color images based on morphological segmentation using modified Harris corner detector. International Conference on Emerging Trends in Electrical Engineering & Energy Management; 2013 Dec 13–15; Chennai, India.
  • Rueda S, Knight C, Papageorghiou AT, et al. Regularised feature-based fuzzy connectedness segmentation of ultrasound images for fetal soft tissue quantification across gestation. IEEE International Symposium on Biomedical Imaging; 2012 May 2–5; Barcelona, Spain.
  • Udupa JK, Samarasekera S. Fuzzy connectedness and object definition: Theory, algorithms, and applications in image segmentation. Graph models. 1996;58:246–261.
  • Xu Y, Xu C, Kuang X, et al. 3D-SIFT-Flow for atlas-based CT liver image segmentation. Med Phys. 2016;43:2229–2241.
  • Jia Z, Huang X, Chang IC, et al. Constrained deep weak supervision for histopathology image segmentation. IEEE T Med Imaging. 2017;36:2376–2388.