Neuroscience Research Institute, Gachon University, Incheon 21988, Korea.
Department of Biomedical Engineering, Gachon University, Incheon 21936, Korea.
Sensors (Basel). 2022 Feb 23;22(5):1741. doi: 10.3390/s22051741.
Improvements in transmission and reception sensitivities of radiofrequency (RF) coils used in ultra-high field (UHF) magnetic resonance imaging (MRI) are needed to reduce specific absorption rates (SAR) and RF power deposition, albeit without applying high-power RF. Here, we propose a method to simultaneously improve transmission efficiency and reception sensitivity of a band-pass birdcage RF coil (BP-BC RF coil) by combining a multi-channel wireless RF element (MCWE) with a high permittivity material (HPM) in a 7.0 T MRI. Electromagnetic field (EM-field) simulations, performed using two types of phantoms, viz., a cylindrical phantom filled with oil and a human head model, were used to compare the effects of MCWE and HPM on BP-BC RF coils. EM-fields were calculated using the finite difference time-domain (FDTD) method and analyzed using Matlab software. Next, to improve RF transmission efficiency, we compared two HPM structures, namely, a hollow cylinder shape HPM (HPM) and segmented cylinder shape HPM (HPM). The HPM and MCWE model comprised 16 elements (16-rad BP-BC RF coil) and this coil configuration demonstrated superior RF transmission efficiency and reception sensitivity along with an acceptable SAR. We expect wider clinical application of this combination in 7.0 T MRIs, which were recently approved by the United States Food and Drug Administration.
为了降低射频(RF)吸收率(SAR)和 RF 功率沉积,需要提高超高频(UHF)磁共振成像(MRI)中使用的射频线圈的发射和接收灵敏度,尽管没有施加高功率 RF。在这里,我们提出了一种在 7.0T MRI 中通过结合多通道无线射频元件(MCWE)和高介电常数材料(HPM)来同时提高带通鸟笼射频线圈(BP-BC RF 线圈)的传输效率和接收灵敏度的方法。使用两种类型的体模(填充油的圆柱形体模和人体头部模型)进行电磁场(EM)模拟,以比较 MCWE 和 HPM 对 BP-BC RF 线圈的影响。使用时域有限差分(FDTD)方法计算 EM 场,并使用 Matlab 软件进行分析。接下来,为了提高 RF 传输效率,我们比较了两种 HPM 结构,即空心圆柱状 HPM(HPM)和分段圆柱状 HPM(HPM)。HPM 和 MCWE 模型由 16 个元素(16-rad BP-BC RF 线圈)组成,这种线圈结构具有更高的 RF 传输效率和接收灵敏度,以及可接受的 SAR。我们期望这种组合在最近获得美国食品和药物管理局批准的 7.0T MRI 中得到更广泛的临床应用。