Three dimension reconstruction of coronary artery tree using single-view cineangiogram

Whereas most of the conventional techniques propose using multiview cineangiograms to reconstruct 3D objects this article proposes to integrate a Three Dimension(3D) model of the coronary artery tree using a standard single-view cineangiogram. Splitting the cineangiograms into non-sequenced and diff...

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Main Authors: Khaleel, Hasan Hadi, O. K. Rahmat, Rahmita Wirza, Dimon, Mohd Zamrin, Mahmod, Ramlan, Mustapha, Norwati
Format: Article
Language:English
Published: Science Publications 2010
Online Access:http://psasir.upm.edu.my/id/eprint/17407/1/17407.pdf
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author Khaleel, Hasan Hadi
O. K. Rahmat, Rahmita Wirza
Dimon, Mohd Zamrin
Mahmod, Ramlan
Mustapha, Norwati
author_facet Khaleel, Hasan Hadi
O. K. Rahmat, Rahmita Wirza
Dimon, Mohd Zamrin
Mahmod, Ramlan
Mustapha, Norwati
author_sort Khaleel, Hasan Hadi
collection UPM
description Whereas most of the conventional techniques propose using multiview cineangiograms to reconstruct 3D objects this article proposes to integrate a Three Dimension(3D) model of the coronary artery tree using a standard single-view cineangiogram. Splitting the cineangiograms into non-sequenced and different angle views is how the data is supplied in this method. Each single view can be used to reconstruct a robust 3D model of the coronary artery from that angle of view. Although the dynamic variations of blood vessels curvature have been difficult to study in Two Dimension (2D) angiograms, there is both experimental and clinical evidence showing that 3D coronary reconstruction is very useful for surgery planning and clinical study. Approach: The algorithm has three stages. The first stage is the vessel extraction and labeling for each view for the purpose of constructing the 3D model, while in the second stage, the vessels information (x, y and z) will be saved in a data file to be forwarded to the next stage. Finally, we input the x, y and z of a specific coronary artery tree to the OPENGL library included in the software, which we developed and called Fast 3D (F3D) and which is displayed in R3. Results: Experimental evaluation has been done to clinical raw data sets where the experimental results revealed that the proposed algorithm has a robust 3D output. Conclusion: Results showed that our proposed algorithm has high robustness for a variety of image resolutions and voxel anisotropy.
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spelling upm.eprints-174072018-10-24T03:52:36Z http://psasir.upm.edu.my/id/eprint/17407/ Three dimension reconstruction of coronary artery tree using single-view cineangiogram Khaleel, Hasan Hadi O. K. Rahmat, Rahmita Wirza Dimon, Mohd Zamrin Mahmod, Ramlan Mustapha, Norwati Whereas most of the conventional techniques propose using multiview cineangiograms to reconstruct 3D objects this article proposes to integrate a Three Dimension(3D) model of the coronary artery tree using a standard single-view cineangiogram. Splitting the cineangiograms into non-sequenced and different angle views is how the data is supplied in this method. Each single view can be used to reconstruct a robust 3D model of the coronary artery from that angle of view. Although the dynamic variations of blood vessels curvature have been difficult to study in Two Dimension (2D) angiograms, there is both experimental and clinical evidence showing that 3D coronary reconstruction is very useful for surgery planning and clinical study. Approach: The algorithm has three stages. The first stage is the vessel extraction and labeling for each view for the purpose of constructing the 3D model, while in the second stage, the vessels information (x, y and z) will be saved in a data file to be forwarded to the next stage. Finally, we input the x, y and z of a specific coronary artery tree to the OPENGL library included in the software, which we developed and called Fast 3D (F3D) and which is displayed in R3. Results: Experimental evaluation has been done to clinical raw data sets where the experimental results revealed that the proposed algorithm has a robust 3D output. Conclusion: Results showed that our proposed algorithm has high robustness for a variety of image resolutions and voxel anisotropy. Science Publications 2010 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/17407/1/17407.pdf Khaleel, Hasan Hadi and O. K. Rahmat, Rahmita Wirza and Dimon, Mohd Zamrin and Mahmod, Ramlan and Mustapha, Norwati (2010) Three dimension reconstruction of coronary artery tree using single-view cineangiogram. Journal of Computer Science, 6 (12). pp. 1485-1489. ISSN 1549-3636; ESSN: 1552-6607 http://www.thescipub.com/abstract/10.3844/jcssp.2010.1485.1489 10.3844/jcssp.2010.1479.1483
spellingShingle Khaleel, Hasan Hadi
O. K. Rahmat, Rahmita Wirza
Dimon, Mohd Zamrin
Mahmod, Ramlan
Mustapha, Norwati
Three dimension reconstruction of coronary artery tree using single-view cineangiogram
title Three dimension reconstruction of coronary artery tree using single-view cineangiogram
title_full Three dimension reconstruction of coronary artery tree using single-view cineangiogram
title_fullStr Three dimension reconstruction of coronary artery tree using single-view cineangiogram
title_full_unstemmed Three dimension reconstruction of coronary artery tree using single-view cineangiogram
title_short Three dimension reconstruction of coronary artery tree using single-view cineangiogram
title_sort three dimension reconstruction of coronary artery tree using single view cineangiogram
url http://psasir.upm.edu.my/id/eprint/17407/1/17407.pdf
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