IEEE Trans Med Imaging. 2021 Mar;40(3):963-973. doi: 10.1109/TMI.2020.3043294. Epub 2021 Mar 2.
A method is presented to measure the radio-frequency (RF) vector magnetic field inside an object using magnetic resonance imaging (MRI). Conventional " [Formula: see text] mapping" in MRI can measure the proton co-rotating component ( [Formula: see text] of the RF field produced by a transmit coil. Here we show that by repeating [Formula: see text] mapping on the same object and coil at multiple (8) specific orientations with respect to the main magnet, the magnitudes and relative phases of all (x, y, z) Cartesian components of the RF field can be determined unambiguously. We demonstrate the method on a circularly polarized volume coil and a loop coil tuned at 123.25 MHz in a 3 Tesla MRI scanner, with liquid phantoms. The volume coil measurement showed the axial component of the RF field, which is normally unmeasurable in MRI, away from the center of the coil. The measured RF vector field maps of both coils compared favorably with numerical simulation, with volumetric normalized root-mean-square difference in the range of 7~20%. While the proposed method cannot be applied to human imaging at present, applications to phantoms and small animals could provide a useful experimental tool to validate RF simulation and verify certain assumptions in [Formula: see text] map-based electrical properties tomography (EPT).
本文提出了一种利用磁共振成像(MRI)测量物体内部射频(RF)矢量磁场的方法。MRI 中的常规“[Formula: see text]映射”可以测量由发射线圈产生的质子共旋转分量([Formula: see text]的 RF 场。这里我们表明,通过在多个(8)相对于主磁体的特定方向上对同一物体和线圈重复[Formula: see text]映射,可以明确确定 RF 场的所有(x、y、z)笛卡尔分量的幅度和相对相位。我们在 3T MRI 扫描仪上使用液性幻像对圆极化体积线圈和调谐至 123.25 MHz 的环形线圈进行了该方法的演示。体积线圈测量结果显示了轴向 RF 场分量,该分量在 MRI 中通常无法测量,并且远离线圈中心。两个线圈的测量 RF 矢量场图与数值模拟结果吻合良好,体积归一化均方根差在 7%~20%之间。虽然目前该方法不能应用于人体成像,但在幻像和小动物中的应用可以为验证 RF 模拟和验证基于[Formula: see text]映射的电特性层析成像(EPT)中的某些假设提供有用的实验工具。