DocumentCode
952432
Title
Data consistency based translational motion artifact reduction in fan-beam CT
Author
Yu, Hengyong ; Wei, Yuchuan ; Hsieh, Jiang ; Wang, Ge
Author_Institution
Dept. of Radiol., Iowa Univ., Iowa City, IA
Volume
25
Issue
6
fYear
2006
fDate
6/1/2006 12:00:00 AM
Firstpage
792
Lastpage
803
Abstract
A basic assumption in the classic computed tomography (CT) theory is that an object remains stationary in an entire scan. In biomedical CT/micro-CT, this assumption is often violated. To produce high-resolution images, such as for our recently proposed clinical micro-CT (CMCT) prototype, it is desirable to develop a precise motion estimation and image reconstruction scheme. In this paper, we first extend the Helgason-Ludwig consistency condition (HLCC) from parallel-beam to fan-beam geometry when an object is subject to a translation. Then, we propose a novel method to estimate the motion parameters only from sinograms based on the HLCC. To reconstruct the moving object, we formulate two generalized fan-beam reconstruction methods, which are in filtered backprojection and backprojection filtering formats, respectively. Furthermore, we present numerical simulation results to show that our approach is accurate and robust
Keywords
computerised tomography; data integrity; image motion analysis; image reconstruction; image resolution; medical image processing; Helgason-Ludwig consistency condition; biomedical CT; biomedical micro-CT; classic computed tomography; data consistency-based translational motion artifact reduction; fan-beam CT; fan-beam geometry; fan-beam reconstruction; filtered backprojection; high-resolution images; image reconstruction; parallel-beam geometry; precise motion estimation; Computed tomography; Filtering; Geometry; Image reconstruction; Motion estimation; Numerical simulation; Parameter estimation; Prototypes; Reconstruction algorithms; Robustness; Backprojection filtration; Helgason-Ludwig consistency condition; fan-beam; filtered backprojection; motion artifacts;
fLanguage
English
Journal_Title
Medical Imaging, IEEE Transactions on
Publisher
ieee
ISSN
0278-0062
Type
jour
DOI
10.1109/TMI.2006.875424
Filename
1637536
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