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Improvements in RF Shimming in High Field MRI Using High Permittivity Materials With Low Order Pre-Fractal Geometries

机译:使用低阶分形几何的高介电常数材料改进高场MRI的射频匀场

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摘要

Ultra-high field MRI is an area of great interest for clinical research and basic science due to the increased signal-to-noise, spatial resolution and magnetic-susceptibility-based contrast. However, the fact that the electromagnetic wavelength in tissue is comparable to the relevant body dimensions means that the uniformity of the excitation field is much poorer than at lower field strengths. In addition to techniques such as transmit arrays, one simple but effective method to counteract this effect is to use high permittivity “pads”. Very high permittivities enable thinner, flexible pads to be used, but the limiting factor is wavelength effects within the pads themselves, which can lead to image artifacts. So far, all studies have used simple continuous rectangular/circular pad geometries. In this work we investigate how the wavelength effects can be partially mitigated utilizing shaped pad with holes. Several arrangements have been simulated, including low order pre-fractal geometries, which maintain the overall coverage of the pad, but can provide better image homogeneity in the region of interest or higher sensitivity depending on the setup. Experimental data in the form of in vivo human images at 7T were acquired to validate the simulation results.
机译:由于增加了信噪比,空间分辨率和基于磁化率的对比度,超高场MRI在临床研究和基础科学领域引起了极大兴趣。但是,组织中的电磁波长与相关人体尺寸相当的事实意味着,与较低的场强相比,激发场的均匀性要差得多。除了诸如发射阵列之类的技术之外,一种简单而有效的抵消这种影响的方法是使用高介电常数的“焊盘”。极高的介电常数允许使用更薄,更柔软的焊盘,但是限制因素是焊盘本身内部的波长效应,这可能导致图像伪影。到目前为止,所有研究都使用简单的连续矩形/圆形垫几何形状。在这项工作中,我们研究了如何利用带孔的定形焊盘来部分缓解波长影响。已模拟了几种布置,包括低阶预分形几何形状,这些几何形状可保持焊盘的总体覆盖范围,但可以根据设置在感兴趣的区域提供更好的图像均匀性或更高的灵敏度。获取以7T人体图像形式的实验数据以验证模拟结果。

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