Multi-source inverse geometry CT(MS-IGCT) system: A new concept of 3D CT imaging

Shinkook Choi, Jongduk Baek

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

Third-generation CT architectures are approaching fundamental limits. While alternative architectures such as electron beam CT and dual energy CT has been proposed, they have severe tradeoffs in terms of image quality, dose-efficiency, and complexity. In this work, we present the concept of multi-source inverse-geometry CT(MS-IGCT) system which overcomes several limits of current CT architectures, and The 3D reconstruction algorithm and initial experimental results of the MS-IGCT system are also presented.

Original languageEnglish
Title of host publication2013 IEEE 11th IVMSP Workshop
Subtitle of host publication3D Image/Video Technologies and Applications, IVMSP 2013 - Proceedings
DOIs
Publication statusPublished - 2013 Nov 28
Event2013 IEEE 11th Workshop on 3D Image/Video Technologies and Applications, IVMSP 2013 - Seoul, Korea, Republic of
Duration: 2013 Jun 102013 Jun 12

Publication series

Name2013 IEEE 11th IVMSP Workshop: 3D Image/Video Technologies and Applications, IVMSP 2013 - Proceedings

Other

Other2013 IEEE 11th Workshop on 3D Image/Video Technologies and Applications, IVMSP 2013
CountryKorea, Republic of
CitySeoul
Period13/6/1013/6/12

Fingerprint

Imaging techniques
Geometry
Image quality
Electron beams

All Science Journal Classification (ASJC) codes

  • Computer Graphics and Computer-Aided Design
  • Computer Vision and Pattern Recognition
  • Computer Science Applications

Cite this

Choi, S., & Baek, J. (2013). Multi-source inverse geometry CT(MS-IGCT) system: A new concept of 3D CT imaging. In 2013 IEEE 11th IVMSP Workshop: 3D Image/Video Technologies and Applications, IVMSP 2013 - Proceedings [6611894] (2013 IEEE 11th IVMSP Workshop: 3D Image/Video Technologies and Applications, IVMSP 2013 - Proceedings). https://doi.org/10.1109/IVMSPW.2013.6611894
Choi, Shinkook ; Baek, Jongduk. / Multi-source inverse geometry CT(MS-IGCT) system : A new concept of 3D CT imaging. 2013 IEEE 11th IVMSP Workshop: 3D Image/Video Technologies and Applications, IVMSP 2013 - Proceedings. 2013. (2013 IEEE 11th IVMSP Workshop: 3D Image/Video Technologies and Applications, IVMSP 2013 - Proceedings).
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abstract = "Third-generation CT architectures are approaching fundamental limits. While alternative architectures such as electron beam CT and dual energy CT has been proposed, they have severe tradeoffs in terms of image quality, dose-efficiency, and complexity. In this work, we present the concept of multi-source inverse-geometry CT(MS-IGCT) system which overcomes several limits of current CT architectures, and The 3D reconstruction algorithm and initial experimental results of the MS-IGCT system are also presented.",
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Choi, S & Baek, J 2013, Multi-source inverse geometry CT(MS-IGCT) system: A new concept of 3D CT imaging. in 2013 IEEE 11th IVMSP Workshop: 3D Image/Video Technologies and Applications, IVMSP 2013 - Proceedings., 6611894, 2013 IEEE 11th IVMSP Workshop: 3D Image/Video Technologies and Applications, IVMSP 2013 - Proceedings, 2013 IEEE 11th Workshop on 3D Image/Video Technologies and Applications, IVMSP 2013, Seoul, Korea, Republic of, 13/6/10. https://doi.org/10.1109/IVMSPW.2013.6611894

Multi-source inverse geometry CT(MS-IGCT) system : A new concept of 3D CT imaging. / Choi, Shinkook; Baek, Jongduk.

2013 IEEE 11th IVMSP Workshop: 3D Image/Video Technologies and Applications, IVMSP 2013 - Proceedings. 2013. 6611894 (2013 IEEE 11th IVMSP Workshop: 3D Image/Video Technologies and Applications, IVMSP 2013 - Proceedings).

Research output: Chapter in Book/Report/Conference proceedingConference contribution

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Choi S, Baek J. Multi-source inverse geometry CT(MS-IGCT) system: A new concept of 3D CT imaging. In 2013 IEEE 11th IVMSP Workshop: 3D Image/Video Technologies and Applications, IVMSP 2013 - Proceedings. 2013. 6611894. (2013 IEEE 11th IVMSP Workshop: 3D Image/Video Technologies and Applications, IVMSP 2013 - Proceedings). https://doi.org/10.1109/IVMSPW.2013.6611894