DocumentCode
2616184
Title
A weighted FBP reconstruction for plasmasphere CT imaging
Author
Li, Liang ; Chen, Zhiqiang ; Xu, Ronglan ; Kang, Kejun ; Zhang, Li ; Xing, Yuxiang
Author_Institution
Dept. of Engineering Physics, Tsinghua University, and Key Laboratory of Particle & Radiation Imaging (Tsinghua University), Ministry of Education, China
fYear
2008
fDate
19-25 Oct. 2008
Firstpage
5086
Lastpage
5089
Abstract
This paper proposes a new topic on tomographic algorithms for volume reconstructing the density of the plasmasphere from a set of emission Extreme Ultraviolet (EUV) radiation. The plasmasphere is a torus region in the Earth’s magnetosphere that consists of cold dense plasma. Approximately 20% of the plasmasphere’s plasma particles are He+. Under the solar radiation, He+ resonantly scatters the 30.4 nm radiation (EUV). The fundamentals of this EUV tomographic imaging are similar to SPECT or PET. However, the Earth completely absorbs all the EUV photons passing through it. The traditional CT reconstruction algorithms can not be used in this kind of imaging case. This paper introduces the fundamentals to use the CT methods to image plasmasphere density. A mathematical plasmasphere model is defined for EUV imaging. We propose tow data sufficiency conditions for parallel-beam and fan-beam reconstructions from EUV projections, respectively. Both parallel-beam and fan-beam algorithms are derived to reconstruct plasmasphere density from these EUV radiation projections. The key idea is to remove the complete absorption effect of the Earth with a specific weighting function. Computer-simulation studies are presented to verify our formulas.
Keywords
Computed tomography; Earth; Helium; Image reconstruction; Magnetosphere; Particle scattering; Plasma density; Resonance; Solar radiation; Ultraviolet sources;
fLanguage
English
Publisher
ieee
Conference_Titel
Nuclear Science Symposium Conference Record, 2008. NSS '08. IEEE
Conference_Location
Dresden, Germany
ISSN
1095-7863
Print_ISBN
978-1-4244-2714-7
Electronic_ISBN
1095-7863
Type
conf
DOI
10.1109/NSSMIC.2008.4774381
Filename
4774381
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