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Helmholtz transceiver array for improving the vertical bar B-1 vertical bar-field homogeneity at 7-T magnetic resonance imaging

机译:Helmholtz收发器阵列,用于在7-T磁共振成像下改善垂直条B-1垂直杆 - 现实性

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摘要

A 16-channel transceiver radiofrequency (RF) array using Helmholtz coils was designed to improve the RF transmission vertical bar B-1(+)vertical bar-field homogeneity for human brain magnetic resonance imaging (MRI) at 7 T. A numerical simulation of the proposed Helmholtz transceiver array was performed using the finite-difference time-domain method-the subset of the finite-element method simulation. The simulation results of proposed 16-channel Helmholtz transceiver array were compared with the generally used rectangular transceiver array in term of their vertical bar B-1(+)vertical bar-field and specific absorption rate (SAR). The simulation of each single element in 16-channel Helmholtz and rectangular transceiver arrays was compared using water phantom in term of their magnetic flux vertical bar B-1 vertical bar homogeneity for the full width at half maximum. From the simulation results, the proposed 16-channel Helmholtz transceiver array configuration offers superior vertical bar B-1(+)vertical bar-field homogeneity and low SAR at 7 T. These modifications to the coil geometries of the transceiver array coil could be applied to a 7-T MRI, and also extended to increase the homogenous coverage on vertical bar B-1(+)vertical bar field with low SAR.
机译:使用Helmholtz线圈的16通道收发器射频(RF)阵列设计为在7T处改善人脑磁共振成像(MRI)的RF传输垂直杆B-1(+)垂直杆域均匀性。数值模拟建议的Helmholtz收发器阵列使用有限差分时间域方法 - 有限元方法模拟的子集。将所提出的16通道Helmholtz收发器阵列的仿真结果与其垂直条B-1(+)垂直杆场和特定吸收率(SAR)的术语相比,与通常使用的矩形收发器阵列进行了比较。使用磁通量垂直条B-1垂直条均匀的磁通术术中的水体模比进行比较16通道Helmholtz和矩形收发器阵列中的每个单个元件的仿真。从仿真结果来看,所提出的16通道Helmholtz收发器阵列配置提供了卓越的垂直杆B-1(+)垂直杆 - 现实型和低SAR,7吨。可以应用对收发器阵列线圈的线圈几何形状的这些修改对于7-T MRI,并且还扩展以增加具有低SAR的垂直条B-1(+)垂直条场的均匀覆盖。

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  • 来源
    《Physics of wave phenomena》 |2017年第2期|共4页
  • 作者单位

    Gachon Univ Neurosci Res Inst 774 Namdong Daero Incheon 405835 South Korea;

    Gachon Univ Neurosci Res Inst 774 Namdong Daero Incheon 405835 South Korea;

    Gachon Univ Neurosci Res Inst 774 Namdong Daero Incheon 405835 South Korea;

    Gachon Univ Neurosci Res Inst 774 Namdong Daero Incheon 405835 South Korea;

    Gachon Univ Neurosci Res Inst 774 Namdong Daero Incheon 405835 South Korea;

    Gachon Univ Neurosci Res Inst 774 Namdong Daero Incheon 405835 South Korea;

    Gachon Univ Neurosci Res Inst 774 Namdong Daero Incheon 405835 South Korea;

    Gachon Univ Neurosci Res Inst 774 Namdong Daero Incheon 405835 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;
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