Correction of motion-induced susceptibility artifacts and B0 drift during proton resonance frequency shift-based MR thermometry in the pelvis with background field removal methods

被引:22
作者
Wu, Mingming [1 ]
Mulder, Hendrik T. [2 ]
Baron, Paul [2 ]
Coello, Eduardo [1 ,3 ]
Menzel, Marion I. [3 ]
van Rhoon, Gerard C. [2 ]
Haase, Axel [1 ]
机构
[1] Tech Univ Munich, Munich Sch Bioengn, TUM Dept Phys, Boltzmannstr 11, D-85748 Garching, Germany
[2] Erasmus MC Canc Inst, Rotterdam, Netherlands
[3] GE Healthcare, Munich, Germany
关键词
B-0; drift; background field removal; hyperthermia; motion; MR thermometry; susceptibility; MAGNETIC-FIELD; TEMPERATURE; HYPERTHERMIA; CONDUCTIVITY; THERMOGRAPHY; ERRORS;
D O I
10.1002/mrm.28302
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
Purpose The linear change of the water proton resonance frequency shift (PRFS) with temperature is used to monitor temperature change based on the temporal difference of image phase. Here, the effect of motion-induced susceptibility artifacts on the phase difference was studied in the context of mild radio frequency hyperthermia in the pelvis. Methods First, the respiratory-induced field variations were disentangled from digestive gas motion in the pelvis. The projection onto dipole fields (PDF) as well as the Laplacian boundary value (LBV) algorithm were applied on the phase difference data to eliminate motion-induced susceptibility artifacts. Both background field removal (BFR) algorithms were studied using simulations of susceptibility artifacts, a phantom heating experiment, and volunteer and patient heating data. Results Respiratory-induced field variations were negligible in the presence of the filled water bolus. Even though LBV and PDF showed comparable results for most data, LBV seemed more robust in our data sets. Some data sets suggested that PDF tends to overestimate the background field, thus removing phase attributed to temperature. The BFR methods even corrected for susceptibility variations induced by a subvoxel displacement of the phantom. The method yielded successful artifact correction in 2 out of 4 patient treatment data sets during the entire treatment duration of mild RF heating of cervical cancer. The heating pattern corresponded well with temperature probe data. Conclusion The application of background field removal methods in PRFS-based MR thermometry has great potential in various heating applications and body regions to reduce motion-induced susceptibility artifacts that originate outside the region of interest, while conserving temperature-induced PRFS. In addition, BFR automatically removes up to a first-order spatial B-0 drift.
引用
收藏
页码:2495 / 2511
页数:17
相关论文
共 40 条
  • [1] Correction of Proton Resonance Frequency Shift MR-Thermometry Errors Caused by Heat-Induced Magnetic Susceptibility Changes during High Intensity Focused Ultrasound Ablations in Tissues Containing Fat
    Baron, Paul
    Deckers, Roel
    de Greef, Martijn
    Merckel, Laura G.
    Bakker, Chris J. G.
    Bouwman, Job G.
    Bleys, Ronald L. A. W.
    van den Bosch, Maurice A. A. J.
    Bartels, Lambertus W.
    [J]. MAGNETIC RESONANCE IN MEDICINE, 2014, 72 (06) : 1580 - 1589
  • [2] Alias subtraction more efficient than conventional zero-padding in the Fourier-based calculation of the susceptibility induced perturbation of the magnetic field in MR
    Bouwman, Job G.
    Bakker, Chris J. G.
    [J]. MAGNETIC RESONANCE IN MEDICINE, 2012, 68 (02) : 621 - 630
  • [3] PROBE FOR MEASURING TEMPERATURE IN RADIO-FREQUENCY-HEATED MATERIAL
    BOWMAN, RR
    [J]. IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, 1976, 24 (01) : 43 - 45
  • [4] Magnetic Resonance-Guided High-Intensity Focused Ultrasound Hyperthermia for Recurrent Rectal Cancer: MR Thermometry Evaluation and Preclinical Validation
    Chu, William
    Staruch, Robert M.
    Pichardo, Samuel
    Tillander, Matti
    Kohler, Max O.
    Huang, Yuexi
    Ylihautala, Mika
    McGuffin, Merrylee
    Czarnota, Gregory
    Hynynen, Kullervo
    [J]. INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2016, 95 (04): : 1259 - 1267
  • [5] Fast PRF-based MR thermometry using double-echo EPI: in vivo comparison in a clinical hyperthermia setting
    Dadakova, Tetiana
    Gellermann, Johanna
    Voigt, Otilia
    Korvink, Jan Gerrit
    Pavlina, John Matthew
    Hennig, Juergen
    Bock, Michael
    [J]. MAGNETIC RESONANCE MATERIALS IN PHYSICS BIOLOGY AND MEDICINE, 2015, 28 (04) : 305 - 314
  • [6] Quantitative Susceptibility Map Reconstruction from MR Phase Data Using Bayesian Regularization: Validation and Application to Brain Imaging
    de Rochefort, Ludovic
    Liu, Tian
    Kressler, Bryan
    Liu, Jing
    Spincemaille, Pascal
    Lebon, Vincent
    Wu, Jianlin
    Wang, Yi
    [J]. MAGNETIC RESONANCE IN MEDICINE, 2010, 63 (01) : 194 - 206
  • [7] Motion Correction in MR Thermometry of Abdominal Organs: a Comparison of the Referenceless vs. the Multibaseline Approach
    de Senneville, Baudouin Denis
    Roujol, Sebastien
    Moonen, Chrit
    Ries, Mario
    [J]. MAGNETIC RESONANCE IN MEDICINE, 2010, 64 (05) : 1373 - 1381
  • [8] de Zwart JA, 2001, MAGNET RESON MED, V45, P128, DOI 10.1002/1522-2594(200101)45:1<128::AID-MRM1017>3.0.CO
  • [9] 2-M
  • [10] DEPOORTER J, 1995, MAGN RESON MED, V34, P359, DOI 10.1002/mrm.1910340313