TOF Data Non-Rigid Motion Correction

被引:0
|
作者
Panin, V. Y. [1 ]
机构
[1] Siemens Healthcare, Mol Imaging, Knoxville, TN 37932 USA
关键词
RESPIRATORY MOTION; PET DATA; RECONSTRUCTION;
D O I
暂无
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
PET acquisition requires prolonged scan times, and during the scan a large magnitude of patient motion can occur. Breathing may result in a significant displacement of organs and consequent blurring of clinically relevant features. Various non-rigid motion corrections that act in the image space were proposed to address this problem. TOF data can be considered to be histo-images. Therefore, non-rigid motion correction can be performed in this quasi image space. The TOF locality property can be used to locally perform motion correction; that is, the approximation of motion as locally rigid on a scale of TOF resolution. In this work we investigate motion correction in the TOF data space, assuming a known motion field. Data correction factors, such as normalization and attenuation, will be combined for motion compensation depending on the combination of data. The benefit of the presented motion correction is that only one data set needs to be used for the final reconstruction. An XCAT phantom is used in computer simulations. Initial results showed that the presented methodology accommodates for changes in non-rigid body movements for a typical pattern of patient motion.
引用
收藏
页数:5
相关论文
共 50 条
  • [31] High efficiency coronary MRA with non-rigid cardiac motion correction: Beyond the quiescent period
    Pang J.
    Chen Y.
    Li D.
    Journal of Cardiovascular Magnetic Resonance, 18 (Suppl 1) : 1 - 2
  • [32] A factorization method in stereo motion for non-rigid objects
    Huang, Yu
    Tu, Jilin
    Huang, Thomas S.
    2008 IEEE INTERNATIONAL CONFERENCE ON ACOUSTICS, SPEECH AND SIGNAL PROCESSING, VOLS 1-12, 2008, : 1065 - +
  • [33] Highly efficient respiratory gating in coronary MR employing non-rigid retrospective motion correction
    Johannes F Schmidt
    Martin Buehrer
    Peter Boesiger
    Sebastian Kozerke
    Journal of Cardiovascular Magnetic Resonance, 12 (Suppl 1)
  • [34] Consolidating Segmentwise Non-Rigid Structure from Motion
    Golyanik, Vladislav
    Jonas, Andre
    Stricker, Didier
    PROCEEDINGS OF MVA 2019 16TH INTERNATIONAL CONFERENCE ON MACHINE VISION APPLICATIONS (MVA), 2019,
  • [35] Forward non-rigid motion tracking for facial MoCap
    Fang, Xiaoyong
    Wei, Xiaopeng
    Zhang, Qiang
    Zhou, Dongsheng
    VISUAL COMPUTER, 2014, 30 (02): : 139 - 157
  • [36] Non-rigid motion estimation based on fuzzy models
    Morales, J
    Verdú, R
    Berenguer, R
    Weruaga, L
    DSP 2002: 14TH INTERNATIONAL CONFERENCE ON DIGITAL SIGNAL PROCESSING PROCEEDINGS, VOLS 1 AND 2, 2002, : 559 - 562
  • [37] Connected vibrations method for non-rigid motion tracking
    Tao, H
    Huang, TS
    FOURTEENTH INTERNATIONAL CONFERENCE ON PATTERN RECOGNITION, VOLS 1 AND 2, 1998, : 1424 - 1426
  • [38] Organic Priors in Non-rigid Structure from Motion
    Kumar, Suryansh
    Van Gool, Luc
    COMPUTER VISION - ECCV 2022, PT II, 2022, 13662 : 71 - 88
  • [39] Non-rigid shape and motion recovery: Degenerate deformations
    Xiao, J
    Kanade, T
    PROCEEDINGS OF THE 2004 IEEE COMPUTER SOCIETY CONFERENCE ON COMPUTER VISION AND PATTERN RECOGNITION, VOL 1, 2004, : 668 - 675
  • [40] Quantification of growth and motion using non-rigid registration
    Rueckert, D.
    Chandrashekara, R.
    Aljabar, P.
    Bhatia, K. K.
    Boardman, J. P.
    Srinivasan, L.
    Rutherford, M. A.
    Dyet, L. E.
    Edwards, A. D.
    Hajnal, J. V.
    Mohiaddin, R.
    COMPUTER VISION APPROACHES TO MEDICAL IMAGE ANALYSIS, 2006, 4241 : 49 - 60