IEEE Trans Med Imaging. 2018 Sep;37(9):2060-2069. doi: 10.1109/TMI.2018.2815620. Epub 2018 Mar 13.
Despite the great promise of integrated positron emission tomography (PET)/magnetic resonance (MR) imaging to add molecular information to anatomical and functional MR, its potential impact in medicine is diminished by a very high cost, limiting its dissemination. An RF-penetrable PET ring that can be inserted into any existing MR system has been developed to address this issue. Employing optical signal transmission along with battery power enables the PET ring insert to electrically float with respect to the MR system. Then, inter-modular gaps of the PET ring allow the RF transmit field from the standard built-in body coil to penetrate into the PET fields-of-view (FOV) with some attenuation that can be compensated for. MR performance, including RF noise, magnetic susceptibility, RF penetrability through and $B_{1}$ uniformity within the PET insert, and MR image quality, were analyzed with and without the PET ring present. The simulated and experimentally measured RF field attenuation factors with the PET ring present were -2.7 and -3.2 dB, respectively. The magnetic susceptibility effect (0.063 ppm) and noise emitted from the PET ring in the MR receive channel were insignificant. $B_{1}$ homogeneity of a spherical agar phantom within the PET ring FOV dropped by 8.4% and MR image SNR was reduced by 3.5 and 4.3 dB with the PET present for gradient-recalled echo and fast-spin echo, respectively. This paper demonstrates, for the first time, an RF-penetrable PET insert comprising a full ring of operating detectors that achieves simultaneous PET/MR using the standard built-in body coil as the RF transmitter.
尽管正电子发射断层扫描(PET)/磁共振(MR)成像的综合应用有望为解剖学和功能磁共振添加分子信息,但由于成本非常高,限制了其传播,其在医学中的潜在影响受到了影响。已经开发出一种可插入任何现有 MR 系统的可穿透射频的 PET 环,以解决这个问题。采用光信号传输和电池供电,使 PET 环插入物能够相对于 MR 系统电浮。然后,PET 环的模块间隙允许标准内置体线圈的 RF 发射场穿透到 PET 视场(FOV)中,穿透会有一定衰减,这可以通过补偿来实现。分析了带有和不带有 PET 环时的 MR 性能,包括 RF 噪声、磁敏感性、穿过 PET 插入物的 RF 穿透性和 PET 插入物内的 B1 均匀性,以及 MR 图像质量。带有 PET 环时,模拟和实验测量的 RF 场衰减因子分别为-2.7 和-3.2 dB。从 PET 环进入 MR 接收通道的磁敏感性效应(0.063 ppm)和噪声可以忽略不计。带有 PET 环时,球形琼脂体模的 B1 均匀性在 PET 环 FOV 内下降了 8.4%,梯度回波和快速自旋回波的 MR 图像信噪比分别降低了 3.5 和 4.3 dB。本文首次证明了一种可穿透射频的 PET 插入物,它由一个完整的工作探测器环组成,可使用标准内置体线圈作为 RF 发射器实现同时 PET/MR。