Department of Health Technology, Technical University of Denmark, Kgs. Lyngby, Denmark.
Cancer Research UK Cambridge Institute, University of Cambridge, Cambridge, UK.
J Magn Reson. 2020 Sep;318:106798. doi: 10.1016/j.jmr.2020.106798. Epub 2020 Jul 27.
A quality assurance protocol for RF coils is proposed, which can be used for volume (Tx/Rx) and surface (Rx) coils. Following this protocol, a benchmarking of seven coils (from three different MR sites) dedicated to C MRI at 3T is reported. Coil performance is particularly important for 3T MRI at the C frequency, since the coil-to-sample noise ratio is typically high. The coils are evaluated experimentally using the proposed protocol based on MR spectroscopic imaging performed with two different phantoms: one head-shaped, and one with cylindrical shape and nearly twice the volume of the first one. To achieve an unbiased SNR comparison of volume and array coils, coil combination was done using sensitivity profiles extracted from the data. SNR, noise correlation matrices and example g-factor maps are reported. For globally calibrated, equal excitation angles, the measured SNR shows large differences for the volume coils of up to 115% at the phantom center for a head phantom. The arrays show lower differences in superficial SNR. The sample surface depth at which the volume coils outperform the arrays is estimated to 7 cm, and SNR furthest away from the coil surface is 28% lower for the best array compared to the best volume coil. A broad set of coils for C at 3T have been benchmarked. The results reported, and the method used to benchmark them, should guide the C community to choose the most suitable coil for a given experiment.
提出了一种用于射频线圈的质量保证协议,该协议可用于体积(Tx/Rx)和表面(Rx)线圈。根据该协议,报告了对 3T 磁共振成像(MRI)用的七个线圈(来自三个不同的 MRI 站点)的基准测试。对于 3T 的 C 频率 MRI,线圈性能尤为重要,因为线圈与样本的信噪比通常很高。通过使用基于两种不同的体模(一种是头形,另一种是圆柱形,体积大约是第一种的两倍)进行的磁共振波谱成像,使用所提出的协议对线圈进行了实验评估。为了实现体积和阵列线圈的无偏 SNR 比较,使用从数据中提取的灵敏度分布对线圈进行了组合。报告了 SNR、噪声相关矩阵和示例 g 因子图。对于全局校准、相等的激励角度,在头部体模的中心,体积线圈的测量 SNR 差异最大,高达 115%。在表面 SNR 方面,阵列的差异较小。对于体积线圈优于阵列的样本表面深度的估计为 7cm,与最佳体积线圈相比,最佳阵列的离线圈表面最远的 SNR 低 28%。已经对 3T 下的 C 频段的大量线圈进行了基准测试。报告的结果和用于基准测试的方法应指导 C 社区为给定实验选择最合适的线圈。