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Hilbert Curve-Based Metasurface to Enhance Sensitivity of Radio Frequency Coils for 7-T MRI

机译:基于希尔伯特曲线的超颖表面,可增强用于7-T MRI的射频线圈的灵敏度

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摘要

In this paper, we propose a compact, lightweight, and easy-to-fabricate Hilbert curve-based metasurface resonator that can effectively increase the sensitivity (radio frequency (RF) field intensity) and penetration depth of an RF coil for 7-T magnetic resonance imaging scanner. A circuit model is proposed to accurately calculate the resonance frequency of Hilbert curve resonators of different orders. A single element of a transverse electromagnetic (EM) coil was used for this paper. The increase in the field sensitivity introduced by the proposed metasurface to an RF coil was successfully demonstrated through simulations and experiments. The EM field produced by the RF coil is redistributed due to the presence of the proposed metasurface. The key feature of the proposed structure is its significant increase in the penetration depth of magnetic fields into the imaging volume. An enhancement of the magnetic field by more than four times was observed at 13.5 cm away from the coil experimentally. Flexibility for matching the coil integrated with the proposed surface is shown.
机译:在本文中,我们提出了一种紧凑,轻便且易于制造的基于希尔伯特曲线的超表面谐振器,该谐振器可以有效地提高7-T磁场的RF线圈的灵敏度(射频(RF)场强度)和穿透深度共振成像扫描仪。为了准确计算不同阶数的希尔伯特曲线谐振器的谐振频率,提出了一种电路模型。本文使用了横向电磁线圈的单个元件。通过仿真和实验成功地证明了拟议的超表面对射频线圈引入的场灵敏度的提高。由于提议的超颖表面的存在,由RF线圈产生的EM场将重新分配。所提出的结构的关键特征是其显着增加了磁场对成像体积的穿透深度。实验发现,在距线圈13.5厘米处,磁场增强了四倍以上。显示了用于匹配与建议表面集成的线圈的灵活性。

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