论文标题
使用共同模式差分模式谐振器
Double Cross Magnetic Wall Decoupling for Quadrature Transceiver RF Array Coils using Common-Mode Differential-mode Resonators
论文作者
论文摘要
与线性极化的RF线圈阵列相反,正交收发器线圈阵列能够改善信号 - 噪声比(SNR),空间分辨率和并行成像性能。由于激发能力降低,也可以使用正交RF线圈获得低比吸收率。但是,由于其结构的复杂性质和电磁所有权,在设计多通道正交RF线圈阵列时,尤其是在Ultrahigh Fields时,实现足够的电磁脱钩是一项挑战。在这项工作中,我们提出了一个针对正交收发器RF阵列的双交叉磁墙解耦,并在7T超高场的共同模式差分模式正交(CMDM)上实现了脱钩方法。提出的磁去耦壁由两个固有的解耦环组成,用于减少正交CMDM阵列中所有多模式电流之间的相互耦合。去耦网络与CMDMS线圈没有物理连接,从而使杠杆率超过了可调的RF阵列。为了验证所提出的跨磁去耦壁的可行性,在数值上执行了基于两个固有环的阻抗的非耦合性能的系统研究。与所提出的去耦网络一起构建了一对正交收发器CMDM,并使用网络分析仪表征了它们的散射矩阵。测得的结果表明,所有当前模式耦合都使用所提出的跨磁壁同时抑制。此外,对于良好的8通道正交膝盖线圈阵列,获得了场分布和SNR强度。
In contrast to linearly polarized RF coil arrays, quadrature transceiver coil arrays are capable of improving signal-to-noise ratio (SNR), spatial resolution and parallel imaging performance. Owing to a reduced excitation power, low specific absorption rate can be also obtained using quadrature RF coils. However, due to the complex nature of their structure and their electromagnetic proprieties, it is challenging to achieve sufficient electromagnetic decoupling while designing multichannel quadrature RF coil arrays, particularly at ultrahigh fields. In this work, we proposed a double cross magnetic wall decoupling for quadrature transceiver RF arrays and implemented the decoupling method on common-mode differential mode quadrature (CMDM) quadrature transceiver arrays at ultrahigh field of 7T. The proposed magnetic decoupling wall comprised of two intrinsic decoupled loops is used to reduce the mutual coupling between all the multi-mode current present in the quadrature CMDM array. The decoupling network has no physical connection with the CMDMs' coils giving leverage over size adjustable RF arrays. In order to validate the feasibility of the proposed cross magnetic decoupling wall, systematic studies on the decoupling performance based on the impedance of two intrinsic loops are numerically performed. A pair of quadrature transceiver CMDMs is constructed along with the proposed decoupling network and their scattering matrix is characterized using a network analyzer. The measured results show all the current modes coupling are concurrently suppressed using the proposed cross magnetic wall. Moreover, field distribution, and SNR intensity are numerically obtained for a well-decoupled 8-channel quadrature knee-coil array.