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Simulation Comparison of Birdcage Coil and Metamaterial Liner for MRI at 3T and 4.7T

机译:3T和4.7T的MRI鸟笼线圈和超材料衬里的模拟比较

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The application of a thin metamaterial (MTM) liner to the RF shield of the magnetic resonance imaging (MRI) system is proposed to improve whole-body imaging compared to conventional "birdcage" body volume coils. The MTM liner facilitates travelling wave (TW) MRI, where the radio-frequency (RF) magnetic field propagates within the MRI bore, which acts as circular waveguide. Full-wave electromagnetic simulations were performed comparing a conventional birdcage coil to a novel MTM liner design in terms of key MR RF performance metrics: transmit efficiency, homogeneity and specific absorption rate (SAR). The designs are compared at 3T (128 MHz) and 4.7T (200MHz), two high-field strengths where the RF field homogeneity and SAR constraints are critical. The ring-structure design of the MTM liner is described and simulations with an empty MRI bore and a homogeneous human body model are performed, including realistic losses for the lumped components used in practical construction. The results show that the MTM liner has a similar mean transmit efficiency, while having reduced 10g averaged local SAR compared to the conventional birdcage.
机译:提出将薄的超材料(MTM)衬里施加到磁共振成像(MRI)系统的RF屏蔽以改善与传统的“鸟笼”体积线圈相比的全身成像。 MTM衬里便于行进波(TW)MRI,其中射频(RF)磁场在MRI孔内传播,其用作圆形波导。在关键MR RF性能度量方面对传统的鸟笼线圈进行比较传统的鸟笼线圈对新型MTM衬里设计进行比较:发射效率,均匀性和特定吸收率(SAR)。该设计在3T(128MHz)和4.7T(200MHz)中进行比较,两个高场强度,其中RF场均匀性和SAR约束是至关重要的。描述了MTM衬里的环形结构设计,并进行了具有空的MRI孔和均质人体模型的模拟,包括用于实际结构中使用的集总成分的现实损失。结果表明,与传统鸟笼相比,MTM衬里具有类似的平均透射效率,同时具有减少的10g平均局部SAR。

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