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A monopole/loop dual-tuned RF coil for ultrahigh field MRI

机译:用于超高场MRI的单极/环路双调谐RF线圈

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Proton and heteronuclear MRI/MRS using dual-tuned (DT) coils could provide both anatomical and metabolic images without repositioning the subject. However, it is technologically challenging to attain sufficiently electromagnetic (EM) decoupling between the heteronuclear channel and proton channel, and keep the imaging areas and profiles of two nuclear channels highly matched. In this study, a hybrid monopole/loop technique was proposed for DT coil design and this technique was validated by implementing and testing a DT 1H/23Na coil for MR imaging at 7T. The RF fields of the monopole (1H channel) and regular L/C loop (23Na channel) were orthogonal and intrinsically EM decoupled. Bench measurement results demonstrated the isolation between the two nuclear channels was better than -28 dB at both nuclear frequencies. Compared with the conventional DT coil using trap circuits, the monopole/loop DT coil had higher MR sensitivity for sodium imaging. The experimental results indicated that the monopole/loop technique might be a simple and efficient design for multinuclear imaging at ultrahigh fields. Additionally, the proposed DT coils based on the monopole/loop technique can be used as building blocks in designing multichannel DT coil arrays.
机译:使用双调谐(DT)线圈的质子和异核MRI / MRS可以提供​​解剖学图像和代谢图像,而无需重新定位受试者。但是,在异核通道和质子通道之间实现足够的电磁(EM)解耦,并使两个核通道的成像区域和轮廓保持高度匹配,在技术上具有挑战性。在这项研究中,提出了一种用于DT线圈设计的混合单极/环路技术,并通过实施和测试用于磁共振成像的DT 1 H / 23 Na线圈验证了该技术的有效性。在7时。单极子( 1 H通道)和规则的 L / C 回路( 23 Na通道)的RF场是正交的,并且本质上是EM解耦的。基准测量结果表明,在两个核频率处,两个核通道之间的隔离度均优于-28 dB。与使用陷波电路的常规DT线圈相比,单极/环形DT线圈对钠成像的MR灵敏度更高。实验结果表明,单极/环路技术可能是一种用于超高场多核成像的简单有效的设计。此外,基于单极/环路技术的DT线圈可以用作设计多通道DT线圈阵列的基础。

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