Patient-Specific Coronary Artery 3D Printing Based on Intravascular Optical Coherence Tomography and Coronary Angiography

Author:

Huang Chenxi1ORCID,Lan Yisha2,Chen Sirui2,Liu Qing1,Luo Xin2,Xu Gaowei2,Zhou Wen3,Lin Fan1ORCID,Peng Yonghong4ORCID,Ng Eddie Y. K.5ORCID,Cheng Yongqiang6ORCID,Zeng Nianyin7ORCID,Zhang Guokai8ORCID,Che Wenliang9ORCID

Affiliation:

1. School of Informatics, Xiamen University, Xiamen, China

2. Department of Computer Science and Technology, Tongji University, Shanghai, China

3. School of Computer and Information, Anhui Normal University, Wuhu, China

4. Faculty of Computer Science, University of Sunderland, Sunderland, UK

5. School of Mechanical and Aerospace Engineering, Nanyang Technological University, Singapore 639798

6. School of Engineering and Computer Science, University of Hull, Hull HU6 7RX, UK

7. Department of Instrumental and Electrical Engineering, Xiamen University, Xiamen, China

8. School of Software, Tongji University, Shanghai, China

9. Department of Cardiology, Shanghai Tenth People’s Hospital, Tongji University School of Medicine, Shanghai, China

Abstract

Despite the new ideas were inspired in medical treatment by the rapid advancement of three-dimensional (3D) printing technology, there is still rare research work reported on 3D printing of coronary arteries being documented in the literature. In this work, the application value of 3D printing technology in the treatment of cardiovascular diseases has been explored via comparison study between the 3D printed vascular solid model and the computer aided design (CAD) model. In this paper, a new framework is proposed to achieve a 3D printing vascular model with high simulation. The patient-specific 3D reconstruction of the coronary arteries is performed by the detailed morphological information abstracted from the contour of the vessel lumen. In the process of reconstruction which has 5 steps, the morphological details of the contour view of the vessel lumen are merged along with the curvature and length information provided by the coronary angiography. After comparing with the diameter of the narrow section and the diameter of the normal section in CAD models and 3D printing model, it can be concluded that there is a high correlation between the diameter of vascular stenosis measured in 3D printing models and computer aided design models. The 3D printing model has high-modeling ability and high precision, which can represent the original coronary artery appearance accurately. It can be adapted for prevascularization planning to support doctors in determining the surgical procedures.

Funder

National Science and Technology Support Program

Publisher

Hindawi Limited

Subject

Multidisciplinary,General Computer Science

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