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VALIDATION OF NUMERICAL APPROACHES FOR ELECTROMAGNETIC CHARACTERIZATION OF MAGNETIC RESONANCE RADIOFREQUENCY COILS

机译:核磁共振射频线圈电磁表征数值方法的验证

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摘要

Numerical methods based on solutions of Maxwell's equations are usually adopted for the electromagnetic characterization of Magnetic Resonance (MR) Radiofrequency (RF) coils. In this context, many different numerical methods can be employed, including time domain methods, e.g., the Finite-Difference Time-Domain (FDTD), and frequency domain methods, e.g., the Finite Element Methods (FEM) and the Method of Moments (MoM). We provide a quantitative comparison of performances and a detailed evaluation of advantages and limitations of the aforementioned methods in the context of RF coil design for MR applications. Specifically, we analyzed three RF coils which are representative of current geometries for clinical applications: a 1.5 T proton surface coil; a 7T dual tuned surface coil; a 7T proton volume coil. The numerical simulation results have been compared with measurements, with excellent agreement in almost every case. However, the three methods differ in terms of required computing resources (memory and simulation time) as well as their ability to handle a realistic phantom model. For this reason, this work could provide "a guide to select the most suitable method for each specific research and clinical applications at low and high field".
机译:通常采用基于Maxwell方程解的数值方法来对磁共振(MR)射频(RF)线圈进行电磁表征。在这种情况下,可以采用许多不同的数值方法,包括时域方法(例如,有限差分时域(FDTD))和频域方法(例如,有限元方法(FEM)和矩量方法(妈妈)。我们在MR应用的RF线圈设计的背景下,提供了性能的定量比较以及上述方法的优缺点的详细评估。具体来说,我们分析了代表当前临床应用的三种射频线圈:1.5 T质子表面线圈; 7T双调谐表面线圈;一个7T质子体积线圈。数值模拟结果已与测量结果进行了比较,几乎在每种情况下都具有很好的一致性。但是,这三种方法在所需的计算资源(内存和仿真时间)以及处理实际模型模型的能力方面有所不同。因此,这项工作可以为“针对低场和高场的每种具体研究和临床应用选择最合适的方法提供指导”。

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