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RF coil design for low and high field MRI: Numerical methods and measurements

机译:低场和高场MRI的射频线圈设计:数值方法和测量

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摘要

Several clinical magnetic resonance applications at 1.5 T and higher field strengths require a careful selection of the RadioFrequency (RF) coil design to optimize the RF spatial distribution and sensitivity. Specifically, two basic requirements must be fulfilled for obtaining high quality images: in the transmission mode, RF coils must be able to produce a uniform magnetic field in the volume of interest so that the nuclei can be properly excited; in the receiving mode, a high signal to noise ratio is needed, and the coil must be able to collect the signal emitted by the nuclei with better sensitivity throughout the volume of interest. A number of analytical and numerical methods are reported in the literature to simulate the RF field distributions of surface and volume coils. In this work, we compared the performances of two computational methods (Method of Moments and Finite Elements Method), considering the modelling of both surface (single loop, figure of eight coil - FO8, dual loop) and volume (TEM) coils. Low (1.5 T) and high (7 T) field operating regimes have been analysed. Measurements obtained on the workbench and with a 1.5 T scanner are used for validation.
机译:在1.5 T和更高磁场强度下的几种临床磁共振应用都需要仔细选择射频(RF)线圈设计,以优化RF空间分布和灵敏度。具体来说,要获得高质量的图像,必须满足两个基本要求:在传输模式下,RF线圈必须能够在目标体积中产生均匀的磁场,以便可以正确地激发核。在接收模式下,需要较高的信噪比,并且线圈必须能够在整个目标体积内以更好的灵敏度收集原子核发出的信号。文献中报道了许多分析和数值方法来模拟表面线圈和体积线圈的RF场分布。在这项工作中,我们比较了两种计算方法(矩量法和有限元法)的性能,并考虑了两个表面(单圈,八个线圈的形状-FO8,双圈)和体积(TEM)线圈的建模。已分析了低(1.5 T)和高(7 T)的现场操作方案。在工作台上和使用1.5 T扫描仪获得的测量值用于验证。

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