REGION BASED 4D TOMOGRAPHIC IMAGE RECONSTRUCTION: APPLICATION TO CARDIAC X-RAY CT

被引:0
|
作者
Van Eyndhoven, G. [1 ]
Batenburg, K. J. [1 ,2 ]
Sijbers, J. [1 ]
机构
[1] Univ Antwerp, iMinds Vis Lab, B-2610 Antwerp, Belgium
[2] Ctr Wiskunde & Informat, NL-1090 GB Amsterdam, Netherlands
关键词
cardiac CT; iterative reconstruction; region based SIRT; dynamic CT; 4D CT; dose reduction; MICRO-CT; DYNAMIC CT; ANGIOGRAPHY;
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
X-ray computed tomography (CT) is a powerful tool for non-invasive cardiac imaging. However, radiation dose is a major issue. In this paper, we propose an iterative reconstruction method that reduces the radiation dose without compromising image quality. This is achieved by exploiting prior knowledge in two ways: the reconstructed object is assumed to consist of both stationary and dynamic regions over time and the dynamic region is assumed to have sparse structures after a proper sparsifying space-time transform. Experiments on simulation data and a real mu CT cardiac mouse dataset show that, with comparable image quality, the radiation dose can be substantially reduced compared to conventional acquisition/reconstruction protocols.
引用
收藏
页码:113 / 117
页数:5
相关论文
共 50 条
  • [31] Clinical application of breathing-adapted 4D CT: image quality comparison to conventional 4D CT
    Werner, Rene
    Szkitsak, Juliane
    Madesta, Frederic
    Buettgen, Laura
    Wimmert, Lukas
    Sentker, Thilo
    Fietkau, Rainer
    Haderlein, Marlen
    Bert, Christoph
    Gauer, Tobias
    Hofmann, Christian
    STRAHLENTHERAPIE UND ONKOLOGIE, 2023, 199 (07) : 686 - 691
  • [32] Clinical application of breathing-adapted 4D CT: image quality comparison to conventional 4D CT
    René Werner
    Juliane Szkitsak
    Frederic Madesta
    Laura Büttgen
    Lukas Wimmert
    Thilo Sentker
    Rainer Fietkau
    Marlen Haderlein
    Christoph Bert
    Tobias Gauer
    Christian Hofmann
    Strahlentherapie und Onkologie, 2023, 199 : 686 - 691
  • [33] CONTOUR RECONSTRUCTION IN 3-D X-RAY CT
    LOUIS, AK
    MAASS, P
    IEEE TRANSACTIONS ON MEDICAL IMAGING, 1993, 12 (04) : 764 - 769
  • [34] Fast X-ray micro-CT for real-time 4D observation
    Takano, H.
    Yoshida, K.
    Tsuji, T.
    Koyama, T.
    Tsusaka, Y.
    Kagoshima, Y.
    9TH INTERNATIONAL CONFERENCE ON X-RAY MICROSCOPY, 2009, 186
  • [35] Low-dose, 4D myocardial perfusion with x-ray micro-CT
    Clark, D. P.
    Badea, C. T.
    MEDICAL IMAGING 2017: PHYSICS OF MEDICAL IMAGING, 2017, 10132
  • [36] ORDERED SUBSETS WITH MOMENTUM FOR ACCELERATED X-RAY CT IMAGE RECONSTRUCTION
    Kim, Donghwan
    Ramani, Sathish
    Fessler, Jeffrey A.
    2013 IEEE INTERNATIONAL CONFERENCE ON ACOUSTICS, SPEECH AND SIGNAL PROCESSING (ICASSP), 2013, : 920 - 923
  • [37] Relaxed Linearized Algorithms for Faster X-Ray CT Image Reconstruction
    Nien, Hung
    Fessler, Jeffrey A.
    IEEE TRANSACTIONS ON MEDICAL IMAGING, 2016, 35 (04) : 1090 - 1098
  • [38] A NEW STATISTICAL IMAGE RECONSTRUCTION ALGORITHM FOR POLYENERGETIC X-RAY CT
    Abella, Monica
    Fessler, Jeffrey A.
    2009 IEEE INTERNATIONAL SYMPOSIUM ON BIOMEDICAL IMAGING: FROM NANO TO MACRO, VOLS 1 AND 2, 2009, : 165 - 168
  • [39] A new interpolation free method for X-ray CT image reconstruction
    Mitra, A
    Banerjee, S
    17TH IEEE SYMPOSIUM ON COMPUTER-BASED MEDICAL SYSTEMS, PROCEEDINGS, 2004, : 54 - 59
  • [40] Simplified statistical image reconstruction algorithm for polyenergetic X-ray CT
    Srivastava, Somesh
    Fessler, Jeffrey A.
    2005 IEEE NUCLEAR SCIENCE SYMPOSIUM CONFERENCE RECORD, VOLS 1-5, 2005, : 1551 - 1555