Literature DB >> 29494344

Stable and efficient retrospective 4D-MRI using non-uniformly distributed quasi-random numbers.

Kathrin Breuer1, Cord B Meyer, Felix A Breuer, Anne Richter, Florian Exner, Andreas M Weng, Serge Ströhle, Bülent Polat, Peter M Jakob, Otto A Sauer, Michael Flentje, Stefan Weick.   

Abstract

The purpose of this work is the development of a robust and reliable three-dimensional (3D) Cartesian imaging technique for fast and flexible retrospective 4D abdominal MRI during free breathing. To this end, a non-uniform quasi random (NU-QR) reordering of the phase encoding (k y -k z ) lines was incorporated into 3D Cartesian acquisition. The proposed sampling scheme allocates more phase encoding points near the k-space origin while reducing the sampling density in the outer part of the k-space. Respiratory self-gating in combination with SPIRiT-reconstruction is used for the reconstruction of abdominal data sets in different respiratory phases (4D-MRI). Six volunteers and three patients were examined at 1.5 T during free breathing. Additionally, data sets with conventional two-dimensional (2D) linear and 2D quasi random phase encoding order were acquired for the volunteers for comparison. A quantitative evaluation of image quality versus scan times (from 70 s to 626 s) for the given sampling schemes was obtained by calculating the normalized mutual information (NMI) for all volunteers. Motion estimation was accomplished by calculating the maximum derivative of a signal intensity profile of a transition (e.g. tumor or diaphragm). The 2D non-uniform quasi-random distribution of phase encoding lines in Cartesian 3D MRI yields more efficient undersampling patterns for parallel imaging compared to conventional uniform quasi-random and linear sampling. Median NMI values of NU-QR sampling are the highest for all scan times. Therefore, within the same scan time 4D imaging could be performed with improved image quality. The proposed method allows for the reconstruction of motion artifact reduced 4D data sets with isotropic spatial resolution of 2.1  ×  2.1  ×  2.1 mm3 in a short scan time, e.g. 10 respiratory phases in only 3 min. Cranio-caudal tumor displacements between 23 and 46 mm could be observed. NU-QR sampling enables for stable 4D-MRI with high temporal and spatial resolution within short scan time for visualization of organ or tumor motion during free breathing. Further studies, e.g. the application of the method for radiotherapy planning are needed to investigate the clinical applicability and diagnostic value of the approach.

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Year:  2018        PMID: 29494344     DOI: 10.1088/1361-6560/aab342

Source DB:  PubMed          Journal:  Phys Med Biol        ISSN: 0031-9155            Impact factor:   3.609


  5 in total

1.  A Minimally Interactive Method for Labeling Respiratory Phases in Free-Breathing Thoracic Dynamic MRI for Constructing 4D Images.

Authors:  Changjian Sun; Jayaram K Udupa; Yubing Tong; Caiyun Wu; Shuxu Guo; Joseph M McDonough; Drew A Torigian; Patrick J Cahill
Journal:  IEEE Trans Biomed Eng       Date:  2022-03-18       Impact factor: 4.538

2.  Probability-based 3D k-space sorting for motion robust 4D-MRI.

Authors:  Duohua Sun; Xiao Liang; Fangfang Yin; Jing Cai
Journal:  Quant Imaging Med Surg       Date:  2019-07

3.  A fast volumetric 4D-MRI with sub-second frame rate for abdominal motion monitoring and characterization in MRI-guided radiotherapy.

Authors:  Jing Yuan; Oi Lei Wong; Yihang Zhou; Kin Yin Chueng; Siu Ki Yu
Journal:  Quant Imaging Med Surg       Date:  2019-07

4.  Non-rigid image registration of 4D-MRI data for improved delineation of moving tumors.

Authors:  Stefan Weick; Kathrin Breuer; Anne Richter; Florian Exner; Serge-Peer Ströhle; Paul Lutyj; Jörg Tamihardja; Simon Veldhoen; Michael Flentje; Bülent Polat
Journal:  BMC Med Imaging       Date:  2020-04-23       Impact factor: 1.930

5.  Nonrigid 3D motion estimation at high temporal resolution from prospectively undersampled k-space data using low-rank MR-MOTUS.

Authors:  Niek R F Huttinga; Tom Bruijnen; Cornelis A T van den Berg; Alessandro Sbrizzi
Journal:  Magn Reson Med       Date:  2020-11-10       Impact factor: 4.668

  5 in total

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