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Design and Test of Magnetic Wall Decoupling for Dipole Transmit/Receive Array for MR Imaging at the Ultrahigh Field of 7T

机译:7T超高场磁偶极子发射/接收阵列磁壁去耦设计与测试

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摘要

Radio-frequency coil arrays using dipole antenna technique have been recently applied for ultrahigh field magnetic resonance (MR) imaging to obtain the better signal–noise-ratio (SNR) gain at the deep area of human tissues. However, the unique structure of dipole antennas makes it challenging to achieve sufficient electromagnetic decoupling among the dipole antenna elements. Currently, there is no decoupling methods proposed for dipole antenna arrays in MR imaging. The recently developed magnetic wall (MW) or induced current elimination decoupling technique has demonstrated its feasibility and robustness in designing microstrip transmission line arrays, L/C loop arrays and monopole arrays. In this study, we aim to investigate the possibility and performance of MW decoupling technique in dipole arrays for MR imaging at the ultrahigh field of 7T. To achieve this goal, a two-channel MW decoupled dipole array was designed, constructed and analyzed experimentally through bench test and MR imaging. Electromagnetic isolation between the two dipole elements was improved from about −3.6 dB (without any decoupling treatments) to −16.5 dB by using the MW decoupling method. MR images acquired from a water phantom using the MW decoupled dipole array and the geometry factor maps were measured, calculated and compared with those acquired using the dipole array without decoupling treatments. The MW decoupled dipole array demonstrated well-defined image profiles from each element and had better geometry factor over the array without decoupling treatments. The experimental results indicate that the MW decoupling technique might be a promising solution to reducing the electromagnetic coupling of dipole arrays in ultrahigh field MRI, consequently improving their performance in SNR and parallel imaging.
机译:最近,使用偶极天线技术的射频线圈阵列已用于超高场磁共振(MR)成像,以在人体组织的深处获得更好的信噪比(SNR)增益。然而,偶极天线的独特结构使得在偶极天线元件之间实现充分的电磁去耦变得具有挑战性。当前,没有提出用于MR成像中的偶极天线阵列的去耦方法。最近开发的磁壁(MW)或感应电流消除去耦技术已证明其在设计微带传输线阵列,L / C回路阵列和单极阵列中的可行性和鲁棒性。在这项研究中,我们旨在研究偶极阵列中MW解耦技术在7T超高场进行MR成像的可能性和性能。为了实现这一目标,设计了一个两通道的MW解耦偶极子阵列,并通过台架试验和MR成像进行了实验分析。通过使用MW去耦方法,两个偶极元件之间的电磁隔离从大约-3.6 dB(不进行任何去耦处理)提高到-16.5 dB。测量,计算并使用MW解耦偶极子阵列从水模型获得的MR图像和几何因子图,并将其与未经去耦处理的偶极子阵列获得的图像进行比较。兆瓦解耦偶极子阵列展示了每个元素的清晰图像轮廓,并且在不进行解耦处理的情况下具有比阵列更好的几何因子。实验结果表明,微波去耦技术可能是减少超高场MRI中偶极子阵列电磁耦合的有前途的解决方案,从而提高其在SNR和并行成像中的性能。

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