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A Novel Method to Decrease Electric Field and SAR Using an External High Dielectric Sleeve at 3 T Head MRI: Numerical and Experimental Results

机译:使用外部高介电套筒在3 T头MRI上减少电场和SAR的新方法:数值和实验结果

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摘要

Materials with high dielectric constant (HDC) have been used in high field MRI to decrease specific absorption rate (SAR), increase magnetic field intensity, and increase signal-to-noise ratio. In previous studies, the HDC materials were placed inside the RF coil decreasing the space available. This study describes an alternative approach that considers an HDC-based sleeve placed outside the RF coil. The effects of an HDC on the electromagnetic (EM) field were studied using numerical simulations with a coil unloaded and loaded with a human head model. In addition, experimental EM measurements at 128 MHz were performed inside a custom-made head coil, fitted with a distilled water sleeve. The numerical simulations showed up to 40% decrease in maximum 10 g-avg. SAR on the surface of the head model with an HDC material of barium titanate. Experimental measurements also showed up to 20% decrease of maximum electric field using an HDC material of distilled water. The proposed method can be incorporated in the design of high field transmit RF coils.
机译:具有高介电常数(HDC)的材料已用于高场MRI中,以降低比吸收率(SAR),增加磁场强度并增加信噪比。在以前的研究中,HDC材料被放置在RF线圈内部,从而减小了可用空间。这项研究描述了一种替代方法,该方法考虑了将基于HDC的套管放置在RF线圈之外。使用数值模拟对HDC对电磁场的影响进行了研究,其中装有线圈,并装有人头模型。此外,在配有蒸馏水套管的定制磁头线圈内进行了128 MHz的实验EM测量。数值模拟显示最大10 g-avg降低多达40%。用钛酸钡的HDC材料在头部模型表面上的SAR。实验测量还显示,使用蒸馏水的HDC材料,最大电场降低了20%。所提出的方法可以并入高场发射RF线圈的设计中。

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