DocumentCode
2519447
Title
EVALUATION OF HEXAGONAL AND SQUARE GEOMETRIES FOR MOTION-FREE ARRAYED-SOURCE X-RAY MICRO-CT
Author
Quan, Enzhuo ; Lalush, David S.
Author_Institution
Dept. of Biomed. Eng., North Carolina State Univ., Raleigh, NC
fYear
2007
fDate
12-15 April 2007
Firstpage
221
Lastpage
224
Abstract
We perform a simulation study of proposed square and hexagonal geometries multi-source X-ray micro-computed tomography (CT) system. The systems are based on dense arrays of microfabricated field-emission X-ray sources which are individually addressable. The hexagonal system has three linear arrays of X-ray sources and three area detectors, forming the six sides of a hexagon. Like the square system proposed previously, the hexagonal system requires no motion of source or subject and the angular sampling for tomography is achieved by flashing the individual sources. An iterative reconstruction algorithm is implemented in both geometries. Using data simulated from a realistic mouse phantom, we demonstrate that both geometries can be effectively reconstructed and the hexagonal system has better performance than the square geometry in terms of limited-angle artifacts, resolution, and signal-to-noise ratio. We conclude that the hexagonal geometry improves performance as compared to the square geometry for motion-free micro-CT
Keywords
X-ray production; computerised tomography; field emission; image reconstruction; image resolution; iterative methods; medical image processing; phantoms; X-ray source arrays; angular sampling; area detectors; arrayed-source X-ray micro-CT; field-emission X-ray sources; hexagonal geometry; image resolution; iterative reconstruction algorithm; limited-angle artifacts; microfabricated X-ray sources; motion-free microcomputed tomography; mouse phantom; signal-to-noise ratio; square geometry; Computed tomography; Geometry; Imaging phantoms; Mice; Reconstruction algorithms; Sampling methods; Sensor arrays; Solid modeling; X-ray detection; X-ray detectors;
fLanguage
English
Publisher
ieee
Conference_Titel
Biomedical Imaging: From Nano to Macro, 2007. ISBI 2007. 4th IEEE International Symposium on
Conference_Location
Arlington, VA
Print_ISBN
1-4244-0672-2
Electronic_ISBN
1-4244-0672-2
Type
conf
DOI
10.1109/ISBI.2007.356828
Filename
4193262
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