Literature DB >> 24040618

Image homogenization using pre-emphasis method for high field MRI.

Ye Li1, Chunsheng Wang, Baiying Yu, Daniel Vigneron, Wei Chen, Xiaoliang Zhang.   

Abstract

Radiofrequency (RF) field (B 1) inhomogeneity due to shortened wavelength at high field is a major cause of magnetic resonance imaging (MRI) nonuniformity in high dielectric biological samples (e.g., human body). In this work, we propose a method to improve the B 1 and MRI homogeneity by using pre-emphasized non-uniform B 1 distribution. The intrinsic B 1 distribution that could be generated by a RF volume coil, specifically a microstrip transmission line (MTL) coil used in this work, was pre-emphasized in the sample's periphery region of interest to compensate for the central brightness induced by high frequency interference effect due to shortened wave length. This pre-emphasized non-uniform B 1 can be realized by varying the parameters of microstrip elements, such as the substrate thickness of MTL volume coil. Both numerical simulation and phantom MR imaging studies were carried out to investigate the feasibility and merit of the proposed method in achieving homogeneous MR images. The simulation results demonstrate that by using a pre-emphasized B 1 distribution generated by the MTL volume coil, relatively uniform B 1 distribution and homogeneous MR image (98% homogeneity) within the spherical phantom (15 cm diameter) were achieved with 4.5 mm thickness. The B 1 and MRI intensity distributions of a 16-element MTL volume coil with fixed substrate thickness and five varied saline loads were modeled and experimentally tested. Similar results from both simulation and experiments were obtained, suggesting substantial improvements of B 1 and MRI homogeneities within the phantom containing 125 mM saline. The overall results demonstrate an efficient B 1 shimming approach for improving high field MRI.

Entities:  

Keywords:  Radiofrequency (RF) field homogeneity; finite difference time domain (FDTD); high field magnetic resonance imaging (MRI); microstrip transmission line; pre-emphasis B1 shimming

Year:  2013        PMID: 24040618      PMCID: PMC3759133          DOI: 10.3978/j.issn.2223-4292.2013.07.01

Source DB:  PubMed          Journal:  Quant Imaging Med Surg        ISSN: 2223-4306


  43 in total

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3.  Microstrip RF surface coil design for extremely high-field MRI and spectroscopy.

Authors:  X Zhang; K Ugurbil; W Chen
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4.  Analysis of wave behavior in lossy dielectric samples at high field.

Authors:  Qing X Yang; Jinghua Wang; Xiaoliang Zhang; Christopher M Collins; Michael B Smith; Haiying Liu; Xiao-Hong Zhu; J Thomas Vaughan; Kamil Ugurbil; Wei Chen
Journal:  Magn Reson Med       Date:  2002-05       Impact factor: 4.668

5.  Different excitation and reception distributions with a single-loop transmit-receive surface coil near a head-sized spherical phantom at 300 MHz.

Authors:  C M Collins; Q X Yang; J H Wang; X Zhang; H Liu; S Michaeli; X-H Zhu; G Adriany; J T Vaughan; P Anderson; H Merkle; K Ugurbil; M B Smith; W Chen
Journal:  Magn Reson Med       Date:  2002-05       Impact factor: 4.668

6.  Acquisition of human multislice MR images at 8 Tesla.

Authors:  A M Abduljalil; A Kangarlu; X Zhang; R E Burgess; P M Robitaille
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7.  Multishot 3D slice-select tailored RF pulses for MRI.

Authors:  V Andrew Stenger; Fernando E Boada; Douglas C Noll
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Authors:  Ulrich Katscher; Peter Börnert; Christoph Leussler; Johan S van den Brink
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9.  Polarization of the RF field in a human head at high field: a study with a quadrature surface coil at 7.0 T.

Authors:  Jinghua Wang; Qing X Yang; Xiaoliang Zhang; Christopher M Collins; Michael B Smith; Xiao-Hong Zhu; Gregor Adriany; Kamil Ugurbil; Wei Chen
Journal:  Magn Reson Med       Date:  2002-08       Impact factor: 4.668

10.  Dielectric resonance phenomena in ultra high field MRI.

Authors:  A Kangarlu; B A Baertlein; R Lee; T Ibrahim; L Yang; A M Abduljalil; P M Robitaille
Journal:  J Comput Assist Tomogr       Date:  1999 Nov-Dec       Impact factor: 1.826

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  4 in total

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2.  Tunable Ultrahigh Dielectric Constant (tuHDC) Ceramic Technique to Largely Improve RF Coil Efficiency and MR Imaging Performance.

Authors:  Wei Chen; Byeong-Yeul Lee; Xiao-Hong Zhu; Hannes M Wiesner; Maryam Sarkarat; Navid P Gandji; Sebastian Rupprecht; Qing X Yang; Michael T Lanagan
Journal:  IEEE Trans Med Imaging       Date:  2020-04-20       Impact factor: 10.048

3.  High-resolution intravascular magnetic resonance imaging of the coronary artery wall at 3.0 Tesla: toward evaluation of atherosclerotic plaque vulnerability.

Authors:  Yanfeng Meng; Zhiguang Mo; Jinying Hao; Yueyou Peng; Hui Yan; Jingbo Mu; Dengfeng Ma; Xiaoliang Zhang; Ye Li
Journal:  Quant Imaging Med Surg       Date:  2021-11

4.  Planar quadrature RF transceiver design using common-mode differential-mode (CMDM) transmission line method for 7T MR imaging.

Authors:  Ye Li; Baiying Yu; Yong Pang; Daniel B Vigneron; Xiaoliang Zhang
Journal:  PLoS One       Date:  2013-11-12       Impact factor: 3.240

  4 in total

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