A robust contour preserving image reconstruction algorithm for a new quantum X-ray radiology system

被引:0
|
作者
Kam, L [1 ]
Cudel, C [1 ]
Fessler, P [1 ]
Hilt, B [1 ]
Vapillon, A [1 ]
机构
[1] GIP, CTA, DCE, DGA, Arcueil, France
来源
PROCEEDINGS OF THE 20TH ANNUAL INTERNATIONAL CONFERENCE OF THE IEEE ENGINEERING IN MEDICINE AND BIOLOGY SOCIETY, VOL 20, PTS 1-6: BIOMEDICAL ENGINEERING TOWARDS THE YEAR 2000 AND BEYOND | 1998年 / 20卷
关键词
quantum X-ray radiology; ultra low dose; image reconstruction; interpolation; contour preserving;
D O I
暂无
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
We propose a robust algorithm for the reconstruction of blind strips happening in images generated by a revolutionary new quantum X-ray radiology system. These strips are due to the gaps between the detectors. Each blind strip is three defective columns wide. It may be wider because it happens that the neighbour channels were defective. A brief review of the literature shows that classical interpolation methods are not accurate enough for contour reconstruction. We developed a robust image reconstruction method which is contour preserving. Prior to the reconstruction, we must proceed to data preprocessing,since quantum detectors related to the channels do not hale the same response. Experimental results are presented and compared to polynomial fitting.
引用
收藏
页码:707 / 710
页数:4
相关论文
共 50 条
  • [41] Total Variation-Stokes Strategy for Sparse-View X-ray CT Image Reconstruction
    Liu, Yan
    Liang, Zhengrong
    Ma, Jianhua
    Lu, Hongbing
    Wang, Ke
    Zhang, Hao
    Moore, William
    IEEE TRANSACTIONS ON MEDICAL IMAGING, 2014, 33 (03) : 749 - 763
  • [42] A new Mumford-Shah total variation minimization based model for sparse-view x-ray computed tomography image reconstruction
    Chen, Bo
    Bian, Zhaoying
    Zhou, Xiaohui
    Chen, Wensheng
    Ma, Jianhua
    Liang, Zhengrong
    NEUROCOMPUTING, 2018, 285 : 74 - 81
  • [43] Contour reconstruction directly from helical cone-beam projections for non-destructive evaluation application of X-ray CT
    Guo, Jiqiang
    Zeng, Li
    Liu, Baodong
    Yu, Wei
    INSIGHT, 2012, 54 (10) : 536 - 543
  • [44] Joint image reconstruction method with correlative multi-channel prior for x-ray spectral computed tomography
    Kazantsev, Daniil
    Jorgensen, Jakob S.
    Andersen, Martin S.
    Lionheart, William R. B.
    Lee, Peter D.
    Withers, Philip J.
    INVERSE PROBLEMS, 2018, 34 (06)
  • [45] Developments in limited data image reconstruction techniques for ultrahigh-resolution x-ray tomographic imaging of microchips
    Haddad, WS
    Trebes, JE
    DEVELOPMENTS IN X-RAY TOMOGRAPHY, 1997, 3149 : 222 - 231
  • [46] Penalized-likelihood image reconstruction for x-ray fluorescence computed tomography with unknown fluorescence attenuation maps
    La Rivière, PJ
    Billmire, DM
    DEVELOPMENTS IN X-RAY TOMOGRAPHY IV, 2004, 5535 : 243 - 252
  • [47] A nonrotating multiparameter 3-D x-ray Imaging system - part I: Modeling and reconstruction
    El Khettabi, F
    Hussein, EMA
    Jama, HA
    IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 2004, 51 (03) : 641 - 647
  • [48] DSC-Recon: Dual-Stage Complementary 4-D Organ Reconstruction From X-Ray Image Sequence for Intraoperative Fusion
    Geng, Haixiao
    Fan, Jingfan
    Yang, Shuo
    Chen, Sigeng
    Xiao, Deqiang
    Ai, Danni
    Fu, Tianyu
    Song, Hong
    Yuan, Kai
    Duan, Feng
    Wang, Yongtian
    Yang, Jian
    IEEE TRANSACTIONS ON MEDICAL IMAGING, 2024, 43 (11) : 3909 - 3923
  • [49] Use of image reconstruction algorithms based on the integral radon transform in small-angle X-ray computer tomography
    Simonov E.N.
    Biomedical Engineering, 2004, 38 (6) : 287 - 291
  • [50] Optimisation of image reconstruction for phase-contrast x-ray Talbot-Lau imaging with regard to mechanical robustness
    Seifert, M.
    Kaeppler, S.
    Hauke, C.
    Horn, F.
    Pelzer, G.
    Rieger, J.
    Michel, T.
    Riess, C.
    Anton, G.
    PHYSICS IN MEDICINE AND BIOLOGY, 2016, 61 (17): : 6441 - 6464