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Optimization of a Transverse Electromagnetic Resonator for Magnetic Resonance Imaging at High Field of 9.4 T

机译:用于9.4 T高场磁共振成像的横向电磁谐振器的优化。

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In this paper, we have implemented a numerical tool using finite element method (FEM) for designing an antenna for MRI (Magnetic Resonance Imaging) probe operating at high field. The birdcage antenna type is a transverse electromagnetic (TEM) coupled lines resonator, and the developed model in the absence of a biological load is based on the propagation equations of voltages and currents on the coupled lines of the resonator. This numerical tool simulates the frequency response of the reflection coefficient of the RF (Radio Frequency) excitation port of the resonator, which allows us to estimate the level of adaptation of the antenna for imaging small animals at a field of 9.4 T.
机译:在本文中,我们已经实现了一种使用有限元方法(FEM)的数值工具,用于设计用于在高磁场下工作的MRI(磁共振成像)探头的天线。鸟笼天线类型是横向电磁(TEM)耦合线谐振器,在没有生物负载的情况下开发的模型基于谐振器耦合线上电压和电流的传播方程。这个数字工具模拟谐振器的RF(射频)激励端口的反射系数的频率响应,这使我们能够估算在9.4 T的磁场下对小动物成像的天线的适应水平。

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