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In-vivo and numerical analysis of the eigenmodes produced by a multi-level Tic-Tac-Toe head transmit array for 7 Tesla MRI

机译:用于7 Tesla MRI的多层Tic-Tac-Toe头部发射阵列产生的本征模的体内和数值分析

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摘要

Radio-frequency (RF) field inhomogeneities and higher levels of specific absorption rate (SAR) still present great challenges in ultrahigh-field (UHF) MRI. In this study, an in-depth analysis of the eigenmodes of a 20-channel transmit Tic-Tac-Toe (TTT) RF array for 7T neuro MRI is presented. The eigenmodes were calculated for five different Z levels (along the static magnetic field direction) of the coil. Four eigenmodes were obtained for each Z level (composed of 4 excitation ports), and they were named based on the characteristics of their field distributions: quadrature, opposite-phase, anti-quadrature, and zero-phase. Corresponding finite-difference time-domain (FDTD) simulations were performed and experimental B1+ field maps were acquired using a homogeneous spherical phantom and human head (in-vivo). The quadrature mode is the most efficient and it excites the central brain regions; the opposite-phase mode excites the brain peripheral regions; anti-quadrature mode excites the head periphery; and the zero-phase mode excites cerebellum and temporal lobes. Using this RF array, up to five eigenmodes (from five different Z levels) can be simultaneously excited. The superposition of these modes has the potential to produce homogeneous excitation with full brain coverage and low levels of SAR at 7T MRI.
机译:在超高场(UHF)MRI中,射频(RF)场的不均匀性和更高的比吸收率(SAR)水平仍然是巨大的挑战。在这项研究中,对20通道7T神经MRI的Tic-Tac-Toe(TTT)RF阵列的本征模进行了深入分析。针对线圈的五个不同的Z水平(沿静磁场方向)计算了本征模。每个Z电平获得四个本征模(由4个激励端口组成),并根据它们的场分布特征命名:正交,反相,反正交和零相。进行了相应的时域有限差分(FDTD)模拟,并使用同质球形体模和人体头部(体内)获取了实验性B1 + 场图。正交模式是最有效的,它可以激发大脑中部区域。反相模式激发大脑周围区域。反正交模式激发头部周围。零相模激发小脑和颞叶。使用该射频阵列,可以同时激发多达五个本征模(来自五个不同的Z电平)。这些模式的叠加有可能在全脑覆盖和7T MRI时产生低水平的SAR,从而产生均匀的激励。

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