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基于改进卷积反投影模型的CT成像伪影消除方法
引用本文:韩寅奔,董泉润. 基于改进卷积反投影模型的CT成像伪影消除方法[J]. 沈阳工业大学学报, 2019, 41(3): 292-297. DOI: 10.7688/j.issn.1000-1646.2019.03.10
作者姓名:韩寅奔  董泉润
作者单位:西北工业大学 a. 教务处, b. 动力与能源学院, 西安 710072
基金项目:国家级大学生创新创业训练计划资助项目(201710699156)
摘    要:针对传统卷积反投影法的CT重建图像容易产生伪影的问题,提出了一种基于改进卷积反投影算法的CT成像伪影消除方法.该方法通过分析给定模板的测量参数,标定CT系统的旋转中心、探测器间距及各探测方向等参数,使用Radon和傅里叶变换得到反投影方程,并利用卷积反投影技术得到每一点的吸收率与投影值的积分关系,使用三次样条插值算法得到较清晰的重建图像.仿真结果表明,所提出的算法具有简明易懂、操作方便和精确度高等诸多优点,相较于传统方法拥有更高的运算效率.

关 键 词:卷积反投影  Radon变换  傅里叶变换  中心射线法  着色处理法  CT成像  伪影  吸收率  

Artifact elimination method for CT imaging based on improved convolution back projection model
HAN Yin-ben,DONG Quan-run. Artifact elimination method for CT imaging based on improved convolution back projection model[J]. Journal of Shenyang University of Technology, 2019, 41(3): 292-297. DOI: 10.7688/j.issn.1000-1646.2019.03.10
Authors:HAN Yin-ben  DONG Quan-run
Affiliation:a. Department of Educational Affairs, b. School of Power and Energy, Northwestern Polytechnical University, Xi’an 710072, China
Abstract:Focusing on the fact that the CT reconstruction image obtained with the traditional convolution back projection method is easy to produce artifacts, an artifact elimination method for the CT imaging based on improved convolution back projection algorithm was proposed. Through analyzing the measurement parameters of a given template, such parameters as the rotation center, detector spacing and detection direction of CT system were calibrated, and the back projection equation was obtained through Radon and Fourier transformation. In addition, the integral relationship between the absorption rate and projection value of each point was obtained with the convolution back projection technique, and the clear reconstructed image was obtained with the cubic spline interpolation algorithm. The simulation results show that the proposed algorithm has many advantages, such as concise and easy understanding, easy operate and high precision, and has a higher computational efficiency than traditional methods.
Keywords:convolution back projection  Radon transformation  Fourier transformation  central ray method  color processing method  CT imaging  artifact  absorption rate  
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