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B1-field inhomogeneity problem of MRI: Basic investigations on a head-tissue-simulating cylinder phantom excited by a birdcage-mode

机译:MRI的B1场不均匀性问题:鸟笼模式激发头部组织模拟气缸幻像的基本研究

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The RF-field inhomogeneity problem of MRI at high resonance frequency is investigated from an electromagnetic viewpoint by numerical FEM simulations. The evaluation is based on a simple two-dimensional model including a cylinder phantom with spatially constant but frequency-dependent material parameters of a head-tissue-simulating liquid (HTSL) and an imposed field-exciting surface current distribution between the phantom's surface and a surrounding perfect electric conductor (PEC) shield. This simple arrangement has been chosen intentionally in order to reduce the set of parameters to a minimum, allowing clear statements about the applicability of the widely used first-order circularly polarized (CP) excitation mode. The coefficient of variation (CoV) of the |B1+| distribution is a suitable figure of merit for the specification of the homogeneity. Only two parameters of the arrangement have been varied - the excitation frequency ranging from 30 MHz up to 450 MHz and the diameter of the phantom ranging from a few centimeters up to 25 cm, which covers more or less every MR head imaging scenario. Two characteristic |B1+| distributions will be introduced, which separate the frequency/diameter combinations into three different regions, a first one with a quasi homogeneous pattern, a second one where an interference pattern — the central brightening — occurs, and a last one, where only a quite weak center amplitude smaller then the mean value is excited.
机译:通过数值FEM模拟从电磁观点研究了高谐振频率下MRI的RF场不均匀性问题。评估基于简单的二维模型,包括圆柱体模型,具有用于头巾模拟液体(HTSL)的空间恒定但频率依赖的材料参数,以及幻影的表面和a之间的施加的场励磁表面电流分布。周围完美的电导体(PEC)屏蔽。故意选择这种简单的布置,以便将该组参数减少到最小值,允许清除关于广泛使用的一流圆极化(CP)激励模式的适用性的清晰陈述。 | B1 + |变异系数(COV)分布是均匀性规范的合适价值。该装置的两个参数已经变化 - 激励频率从30MHz的激发频率范围为高达450 MHz,而且幻象的直径范围从几厘米到25厘米,其中覆盖每个MR头部成像场景或多或少。两个特点| B1 + |将引入分布,将频率/直径组合分成三个不同的区域,第一区域是一种具有准均匀图案的第一个,第二个是干涉模式的第二个 - 发生中央变化 - 以及最后一个,在那里只有相当弱中心幅度较小,然后柔化平均值。

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