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Reconstruction of Intima and Adventitia Models into a State Undeformed by a Catheter by Using CT, IVUS, and Biplane X-Ray Angiogram Images

机译:通过使用CT,IVUS和双向X射线血管造影图像将内膜和外膜模型的重建成导管未变形的状态

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摘要

The number of studies on blood flow analysis using fluid-structure interaction (FSI) analysis is increasing. Though a 3D blood vessel model that includes intima and adventitia is required for FSI analysis, there are difficulties in generating it using only one type of medical imaging. In this paper, we propose a 3D modeling method for accurate FSI analysis. An intravascular ultrasound (IVUS) image is used with biplane X-ray angiogram images to calculate the position and orientation of the blood vessel. However, these images show that the blood vessel is deformed by the catheter inserted into the blood vessel for IVUS imaging. To eliminate such deformation, a CT image was added and the two models were registered. First, a 3D model of the undeformed intima was generated using a CT image. In the second stage, a model of intima and adventitia deformed by the catheter was generated by combining the IVUS image and the X-ray angiogram images. A 3D model of intima and adventitia with the deformation caused by insertion of the catheter eliminated was generated by matching these 3D blood vessel models in different states. In addition, a 3D blood vessel model including bifurcation was generated using the proposed method.
机译:使用流体结构相互作用(FSI)分析的血流分析研究数量增加。虽然FSI分析所需3D血管模型包括内含内膜和外膜的3D血管模型,但仅使用一种类型的医学成像产生困难。本文提出了一种用于精确FSI分析的3D建模方法。血管内超声(IVUS)图像与双向X射线血管造影图像一起使用,以计算血管的位置和取向。然而,这些图像表明,血管通过插入血管中的导管而变形,用于IVUS成像。为了消除这种变形,加入CT图像并注册了两种模型。首先,使用CT图像产生未变形内部的3D模型。在第二阶段,通过组合IVUS图像和X射线血管造影图像来产生由导管变形的内膜和桡脂模型。通过在不同状态下匹配这些3D血管模型,产生了由插入导管引起的内膜和外膜的3D模型。另外,使用所提出的方法产生包括分叉的3D血管模型。

著录项

  • 作者

    Jinwon Son; Young Choi;

  • 作者单位
  • 年度 2017
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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