Yang Yijin, Zhang Boqiao, Lu Ming, Yan Xinqiang
Department of Electrical and Computer Engineering, Vanderbilt University, Nashville, TN 37232, USA.
Department of Electrical and Computer Engineering, University of Toronto, Toronto, ON M5S 1A1, Canada.
Magn Reson Imaging. 2025 Jan;115:110268. doi: 10.1016/j.mri.2024.110268. Epub 2024 Oct 21.
Common-mode currents can degrade the RF coil performance and introduce potential safety hazards in MRI. Baluns are the standard method to suppress these undesired common-mode currents. Specifically, floating baluns are preferred in many applications because they are removable, allow post-installation adjustment and avoid direct soldering on the cable. However, floating baluns are typically bulky to achieve excellent common-mode suppression, taking up valuable space in the MRI bore. This is particularly severe for multi-nuclear MRI/MRS applications, as two RF systems exist. In this work, we present a novel dual-tuned floating balun that is fully removable, does not require any physical connection to the coaxial cable, and has a significantly reduced footprint. The floating design employs an inductive coupling between the cable solenoid and a floating solenoid resonator rather than a direct physical connection. Unlike the previous floating solenoid balun, this balun employs a two-layer design further to improve the mutual coupling between the two solenoids. A pole-insertion method is used to suppress common-mode currents at two user-selectable frequencies simultaneously. Bench testing of the fabricated device at 7 T demonstrated high common-mode rejection ratios at Larmor frequencies of both H and Na, even with a compact dimension (diameter 18 mm and length 12 mm). This balun's removable, compact, and multi-resonant nature enables light-weighting, allows more coil elements, and improves cable management for advanced multi-nuclear MRI/MRS systems.
共模电流会降低射频线圈的性能,并在磁共振成像(MRI)中引入潜在的安全隐患。平衡-不平衡变换器是抑制这些不需要的共模电流的标准方法。具体而言,浮动平衡-不平衡变换器在许多应用中更受青睐,因为它们可拆卸,允许安装后进行调整,并且避免直接焊接在电缆上。然而,浮动平衡-不平衡变换器通常体积较大,以实现出色的共模抑制,这会占用MRI孔内的宝贵空间。对于多核MRI/MRS应用来说,这种情况尤为严重,因为存在两个射频系统。在这项工作中,我们提出了一种新型的双调谐浮动平衡-不平衡变换器,它完全可拆卸,不需要与同轴电缆进行任何物理连接,并且占地面积显著减小。这种浮动设计采用电缆螺线管和浮动螺线管谐振器之间的电感耦合,而不是直接的物理连接。与先前浮动螺线管平衡-不平衡变换器不同的是,这种平衡-不平衡变换器采用两层设计,进一步改善了两个螺线管之间的互耦。采用极点插入法可同时在两个用户可选频率上抑制共模电流。在7T磁场下对制作的器件进行的台架测试表明,即使尺寸紧凑(直径18毫米,长度12毫米),在H和Na的拉莫尔频率下也具有较高的共模抑制比。这种平衡-不平衡变换器的可拆卸、紧凑和多谐振特性有助于实现轻量化,允许使用更多的线圈元件,并改善了先进多核MRI/MRS系统的电缆管理。