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使用优化的射频激励矢量并行传输对种植体部位进行 MRI 检查。

MRI of Implantation Sites Using Parallel Transmission of an Optimized Radiofrequency Excitation Vector.

机构信息

Berlin Ultrahigh Field Facility, Max-Delbrück-Center for Molecular Medicine in the Helmholtz Association, 13125 Berlin, Germany.

Charité-Universitätsmedizin Berlin, 10117 Berlin, Germany.

出版信息

Tomography. 2023 Mar 8;9(2):603-620. doi: 10.3390/tomography9020049.

Abstract

Postoperative care of orthopedic implants is aided by imaging to assess the healing process and the implant status. MRI of implantation sites might be compromised by radiofrequency (RF) heating and RF transmission field (B1+) inhomogeneities induced by electrically conducting implants. This study examines the applicability of safe and B1+-distortion-free MRI of implantation sites using optimized parallel RF field transmission (pTx) based on a multi-objective genetic algorithm (GA). Electromagnetic field simulations were performed for eight eight-channel RF array configurations ( = 297.2 MHz), and the most efficient array was manufactured for phantom experiments at 7.0 T. Circular polarization (CP) and orthogonal projection (OP) algorithms were applied for benchmarking the GA-based shimming. B1+ mapping and MR thermometry and imaging were performed using phantoms mimicking muscle containing conductive implants. The local SAR10g of the entire phantom in GA was 12% and 43.8% less than the CP and OP, respectively. Experimental temperature mapping using the CP yielded ΔT = 2.5-3.0 K, whereas the GA induced no extra heating. GA-based shimming eliminated B1+ artefacts at implantation sites and enabled uniform gradient-echo MRI. To conclude, parallel RF transmission with GA-based excitation vectors provides a technical foundation en route to safe and B1+-distortion-free MRI of implantation sites.

摘要

骨科植入物的术后护理可以借助影像学来评估愈合过程和植入物状态。MRI 可能会受到植入物的射频(RF)加热和 RF 传输场(B1+)不均匀性的影响。本研究通过基于多目标遗传算法(GA)的优化并行 RF 场传输(pTx),检查了使用植入物部位安全且无 B1+失真的 MRI 的适用性。对八种八通道 RF 阵列配置(= 297.2 MHz)进行了电磁场模拟,并为 7.0 T 下的幻影实验制造了最有效的阵列。对圆形极化(CP)和正交投影(OP)算法进行了应用,以基准 GA 为基础的调谐。使用模拟含有导电植入物的肌肉的体模进行了 B1+映射和磁共振测温及成像。GA 中整个体模的局部 SAR10g 比 CP 和 OP 分别低 12%和 43.8%。使用 CP 进行的实验温度映射产生了 ΔT = 2.5-3.0 K,而 GA 没有引起额外的加热。GA 为基础的调谐消除了植入物部位的 B1+伪影,并实现了均匀梯度回波 MRI。总之,基于 GA 的激发向量的并行 RF 传输为安全且无 B1+失真的植入物部位 MRI 提供了技术基础。

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