Improved MR thermometry for laser interstitial thermotherapy

被引:26
作者
Odeen, Henrik [1 ]
Parker, Dennis L. [1 ]
机构
[1] Univ Utah, Dept Radiol & Imaging Sci, Utah Ctr Adv Imaging Res, Salt Lake City, UT USA
关键词
magnetic resonance temperature imaging; magnetic resonance thermometry; laser interstitial thermal therapy; proton resonance frequency shift; TEMPORAL RESOLUTION; THERMAL THERAPY; TEMPERATURE; ABLATION; MODEL; SHIFT; LITT; RECONSTRUCTION; SENSITIVITY; GUIDANCE;
D O I
10.1002/lsm.23049
中图分类号
R75 [皮肤病学与性病学];
学科分类号
100206 ;
摘要
ObjectivesTo develop, test and evaluate improved 2D and 3D protocols for proton resonance frequency shift magnetic resonance temperature imaging (MRTI) of laser interstitial thermal therapy (LITT). The objective was to develop improved MRTI protocols in terms of temperature measurement precision and volume coverage compared to the 2D MRTI protocol currently used with a commercially available LITT system. MethodsFour different 2D protocols and four different 3D protocols were investigated. The 2D protocols used multi-echo readouts to prolong the total MR sampling time and hence the MRTI precision, without prolonging the total acquisition time. The 3D protocols provided volumetric thermometry by acquiring a slab of 12 contiguous slices in the same acquisition time as the 2D protocols. The study only considered readily available pulse sequences (Cartesian 2D and 3D gradient recalled echo and echo planar imaging [EPI]) and methods (partial Fourier and parallel imaging) to ensure wide availability and rapid clinical implementation across vendors and field strengths. In vivo volunteer studies were performed to investigate and compare MRTI precision and image quality. Phantom experiments with LITT heating were performed to investigate and compare MRTI precision and accuracy. Different coil setups were used in the in vivo studies to assess precision differences between using local (such as flex and head coils) and non-local (i.e., body coil) receive coils. Studies were performed at both 1.5T and 3T. ResultsThe improved 2D protocols provide up to a factor of two improvement in the MRTI precision in the same acquisition time, compared to the currently used clinical protocol. The 3D echo planar imaging protocols provide comparable precision as the currently used 2D clinical protocol, but over a substantially larger field of view, without increasing the acquisition time. As expected, local receive coils perform substantially better than the body coil, and 3T provides better MRTI accuracy and precision than 1.5 T. 3D data can be zero-filled interpolated in all three dimensions (as opposed to just two dimensions for 2D data), reducing partial volume effects and measuring higher maximum temperature rises. ConclusionsWith the presented protocols substantially improved MRTI precision (for 2D imaging) or greatly improved field of view coverage (for 3D imaging) can be achieved in the same acquisition time as the currently used protocol. Only widely available pulse sequences and acquisition methods were investigated, which should ensure quick translation to the clinic. Lasers Surg. Med. 51:286-300, 2019. (c) 2019 Wiley Periodicals, Inc.
引用
收藏
页码:286 / 300
页数:15
相关论文
共 58 条
  • [1] Temperature imaging of laser-induced thermotherapy (LITT) by MRI: evaluation of different sequences in phantom
    Bazrafshan, Babak
    Huebner, Frank
    Farshid, Parviz
    Hammerstingl, Renate
    Paul, Jijo
    Vogel, Vitali
    Maentele, Werner
    Vogl, Thomas J.
    [J]. LASERS IN MEDICAL SCIENCE, 2014, 29 (01) : 173 - 183
  • [2] Bernstein M A, 2004, HDB MRI PULSE SEQUEN
  • [3] Towards real-time thermometry using simultaneous multislice MRI
    Borman, P. T. S.
    Bos, C.
    de Boorder, T.
    Raaymakers, B. W.
    Moonen, C. T. W.
    Crijns, S. P. M.
    [J]. PHYSICS IN MEDICINE AND BIOLOGY, 2016, 61 (17) : N461 - N477
  • [4] Image-guided ablation of painful metastatic bone tumors: a new and effective approach to a difficult problem
    Callstrom, MR
    Charboneau, JW
    Goetz, MP
    Rubin, J
    Atwell, TD
    Farrell, MA
    Welch, TJ
    Maus, TP
    [J]. SKELETAL RADIOLOGY, 2006, 35 (01) : 1 - 15
  • [5] MR-guided laser-induced thermal therapy (LITT) for recurrent glioblastomas
    Carpentier, Alexandre
    Chauvet, Dorian
    Reina, Vincent
    Beccaria, Kevin
    Leclerq, Delphine
    McNichols, Roger J.
    Gowda, Ashok
    Cornu, Philippe
    Delattre, Jean-Yves
    [J]. LASERS IN SURGERY AND MEDICINE, 2012, 44 (05) : 361 - 368
  • [6] Study of laser ablation in the in vivo rabbit brain with MR thermometry
    Chen, LL
    Wansapura, JP
    Heit, G
    Butts, K
    [J]. JOURNAL OF MAGNETIC RESONANCE IMAGING, 2002, 16 (02) : 147 - 152
  • [7] Extended Kalman Filtering for Continuous Volumetric MR-Temperature Imaging
    de Senneville, Baudouin Denis
    Roujol, Sebastien
    Hey, Silke
    Moonen, Chrit
    Ries, Mario
    [J]. IEEE TRANSACTIONS ON MEDICAL IMAGING, 2013, 32 (04) : 711 - 718
  • [8] DEPOORTER J, 1995, MAGNET RESON MED, V33, P74, DOI 10.1002/mrm.1910330111
  • [9] REDUCTION OF PARTIAL-VOLUME ARTIFACTS WITH ZERO-FILLED INTERPOLATION IN 3-DIMENSIONAL MR-ANGIOGRAPHY
    DU, YPP
    PARKER, DL
    DAVIS, WL
    CAO, G
    [J]. JMRI-JOURNAL OF MAGNETIC RESONANCE IMAGING, 1994, 4 (05): : 733 - 741
  • [10] THEORETICAL ASPECTS OF MOTION SENSITIVITY AND COMPENSATION IN ECHO-PLANAR IMAGING
    DUERK, JL
    SIMONETTI, OP
    [J]. JMRI-JOURNAL OF MAGNETIC RESONANCE IMAGING, 1991, 1 (06): : 643 - 650