Winkler Simone A, Warr Paul A, Stockmann Jason P, Mareyam Azma, Keil Boris, Watkins Ronald D, Wald Lawrence L, Rutt Brian K
Department of Radiology, Stanford University, Stanford, California, USA., Grant sponsor: NIH K99 EB24341., Grant sponsor: NIH P41 EB015891., Grant sponsor: NSERC., Grant sponsor: BWF.
Martinos Center for Biomedical Imaging, Massachusetts General Hospital, Charlestown, Massachusetts, USA.
Concepts Magn Reson Part B Magn Reson Eng. 2018 Feb;48B(1). doi: 10.1002/cmr.b.21364. Epub 2018 Jun 7.
To identify novel concepts for RF-shim loop architectures suitable for 7T made of two concentric conducting loops fulfilling RF and DC functions, respectively, and to determine their relative SNR performance. The goal is to minimize interference between the two systems while making efficient use of the space closest to the body.
We show by means of theoretical derivation of the frequency spectrum that the proposed two-loop structure exhibits an anti-resonant null and a resonant peak in the frequency domain.
The proposed structure is comprised of two concentric wire loops either arranged as nested loops or in the form of a coaxial cable, in which the two conductors carry the RF and shim signals, respectively. We use theory, simulation, and phantom measurements to obtain frequency spectra and SNR maps for the proposed structures.
Retained SNR is found to be 75% in the coaxial loop and ranges from 57% to 67% in three different coaxial configurations. We have found both implementations to be a viable concept for the use in RF-shim devices if remaining SNR limitations can be overcome.
We have investigated two new design modalities in 7T RF-shim coil design that separate the RF and shim conductors such that the previously proposed toroidal chokes are eliminated - thereby removing undesired additional loss, bulk, and design complexity.
确定适用于7T的新型射频匀场线圈架构概念,该架构由两个分别实现射频和直流功能的同心导电环组成,并确定它们的相对信噪比性能。目标是在有效利用最靠近身体的空间的同时,使两个系统之间的干扰最小化。
我们通过频谱的理论推导表明,所提出的双环结构在频域中呈现出一个反谐振零点和一个谐振峰值。
所提出的结构由两个同心导线环组成,它们可以排列成嵌套环或同轴电缆的形式,其中两根导体分别承载射频信号和匀场信号。我们使用理论、仿真和体模测量来获取所提出结构的频谱和信噪比地图。
同轴环中的保留信噪比为75%,在三种不同的同轴配置中,该值在57%至67%之间。我们发现,如果能够克服剩余的信噪比限制,这两种实现方式对于用于射频匀场设备来说都是可行的概念。
我们研究了7T射频匀场线圈设计中的两种新设计模式,它们将射频导体和匀场导体分开,从而消除了先前提出的环形扼流圈,进而消除了不必要的额外损耗、体积和设计复杂性。