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Tracking of Intracavitary Instrument Markers in Coronary Angiography Images
Zhang, Yihe1; Bai, Xiuxiu1; Jin, Qinhua2; Jing, Jing2; Chen, Yundai2; Liu, Qiang3; Tang, Wenhui3; Lu, Quanmao4; Mi, Yanan4; Zhu, Rui5; Cao, Yihui4
2019
会议名称1st International Workshop on Machine Learning and Medical Engineering for Cardiovasvular Healthcare, MLMECH 2019, and the 8th International Joint Workshops on Computing and Visualization for Intravascular Imaging and Computer Assisted Stenting, CVII-STENT 2019, held in conjunction with 22nd International Conference on Medical Image Computing and Computer-Assisted Intervention, MICCAI 2019
会议录名称Machine Learning and Medical Engineering for Cardiovascular Health and Intravascular Imaging and Computer Assisted Stenting - 1st International Workshop, MLMECH 2019, and 8th Joint International Workshop, CVII-STENT 2019, Held in Conjunction with MICCAI 2019, Proceedings
卷号11794 LNCS
页码175-183
会议日期2019-10-13
会议地点Shenzhen, China
出版者Springer
产权排序5
摘要

In order to quickly and accurately obtain the marker points in coronary angiography images in interventional surgery for cardiovascular diseases, this paper proposes a method for tracking the marker points in coronary angiography images. Firstly, it is necessary for the operator to manually mark a small number of vascular center points to find the position of the guide line and the labeled points on the guide wire. So the vascular center line can be obtained by using the vascular center point of artificial labeling with Hessian matrix eigenvector. Then we design a filter to detect the guide wire by combining the characteristics of the guide wire and the center line of the vessel. Finally, the marker point is detected by filtering along the guide wire. In the following images, all the vascular center points in the image are obtained by the automatic vascular centerline acquisition algorithm, and the vascular centerline of the frame is obtained by Iterative Closest Point (ICP) registration of the point set with the adjacent frame centerline. Then the guide wire acquisition method of this frame image is consistent with the above algorithm. Finally, the marker of the frame is obtained by combining the positions of the adjacent frame marker and frame guide wire. The experimental results show that our method can quickly and accurately detect the location of marker points in coronary angiography image sequence with a small amount of manual assistance, and can be applied to the computer-aided diagnosis and treatment of cardiovascular diseases. © 2019, Springer Nature Switzerland AG.

关键词Angiography Cardiovascular Object tracking Coronary angiography image
作者部门其他部门
收录类别EI
ISBN号9783030333263
语种英语
ISSN号03029743;16113349
EI入藏号20194907775113
文献类型会议论文
条目标识符http://ir.opt.ac.cn/handle/181661/32010
专题热控技术研究室_其它单位_其它部门
通讯作者Chen, Yundai
作者单位1.School of Software Engineering, Xi’an Jiaotong University, Xi’an, China;
2.Department of Cardiology, Chinese PLA General Hospital, Beijing, China;
3.Fuwai Hospital Chinese Academy of Medical Sciences, Beijing, China;
4.Shenzhen Vivolight Medical Device & Technolog Co., Ltd., Shenzhen, China;
5.Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi’an, China
推荐引用方式
GB/T 7714
Zhang, Yihe,Bai, Xiuxiu,Jin, Qinhua,et al. Tracking of Intracavitary Instrument Markers in Coronary Angiography Images[C]:Springer,2019:175-183.
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