论文标题

用于收发器阵列的发夹RF谐振器具有高通道间隔离和B1效率在超高场7T MR成像

Hairpin RF Resonators for Transceiver Arrays with High Inter-channel Isolation and B1 Efficiency at Ultrahigh Field 7T MR Imaging

论文作者

Payne, Komlan, Ying, Leslie L., Zhang, Xiaoliang

论文摘要

需要在近距离或高密度收发器RF阵列元件之间进行电磁脱钩,以维持从单个通道的磁通密度的完整性,以增强检测灵敏度和并行成像的性能。高阻抗RF线圈已证明是绕过这些耦合问题的突出设计方法。然而,这些线圈的固有特征在B1场效率和SNR上具有后果。在这项工作中,我们提出了一个高阻抗RF谐振器设计,用于在超高磁场处高度脱钩的多通道收发器阵列。由于发夹谐振器的高阻抗特性,提议的收发器阵列可以在不使用谐振元件之间使用任何专用的退耦电路的情况下提供高的去耦性能。由于消除了谐振器电路中的集总电感器,因此可以预期成像受试者的B1场效率较高。为了验证拟议的发夹RF线圈的可行性,进行了对脱钩性能,场分布和SNR的系统研究,并将结果与​​从现有的高阻抗RF线圈中获得的结果进行了比较,例如,“自我耦合的RF COIL”。为了进一步研究其性能,设计了使用带有圆柱体幻影的提议的发夹谐振器的8通道头线圈阵列,与7T处的“自我耦合”线圈相比,B1+场强度的增长率为19%。此外,使用更现实的人头体素模型评估发夹RF线圈的特性。与自配合的高阻抗线圈相比,提出的发夹RF线圈提供了出色的脱钩性能和出色的RF磁场效率。一对制造的发夹线圈的台式测试证明是符合数值结果的良好性。

Electromagnetic decoupling among a close-fitting or high-density transceiver RF array elements is required to maintain the integrity of the magnetic flux density from individual channel for enhanced performance in detection sensitivity and parallel imaging. High-impedance RF coils have demonstrated to be a prominent design method to circumvent these coupling issues. Yet, inherent characteristics of these coils have ramification on the B1 field efficiency and SNR. In this work, we propose a hairpin high impedance RF resonator design for highly decoupled multichannel transceiver arrays at ultrahigh magnetic fields. Due to the high impedance property of the hairpin resonators, the proposed transceiver array can provide high decoupling performance without using any dedicated decoupling circuit among the resonant elements. Because of elimination of lumped inductors in the resonator circuit, higher B1 field efficiency in imaging subjects can be expected. In order to validate the feasibility of the proposed hairpin RF coils, systematical studies on decoupling performance, field distribution, and SNR are performed, and the results are compared with those obtained from existing high-impedance RF coil, e.g., "self-decoupled RF coil". To further investigate its performance, an 8-channel head coil array using the proposed hairpin resonators loaded with a cylindrical phantom is designed, demonstrating a 19 % increase of the B1+ field intensity compared to the "self-decoupled" coils at 7T. Furthermore, the characteristics of the hairpin RF coils are evaluated using a more realistic human head voxel model numerically. The proposed hairpin RF coil provides excellent decoupling performance and superior RF magnetic field efficiency compared to the self-decoupled high impedance coils. Bench test of a pair of fabricated hairpin coils prove to be in good accordance with numerical results.

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