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Wide-bore 1.5 Tesla MR imagers for guidance and monitoring of radiofrequency ablation of renal cell carcinoma: initial experience on feasibility.

机译:用于指导和监测肾细胞癌射频消融的宽口径1.5 Tesla MR成像仪:可行性的初步经验。

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摘要

This study was conducted to test and demonstrate the feasibility of magnetic resonance (MR)-guided radiofrequency (RF) ablation of renal cell carcinoma (RCC) using a 1.5 T whole-body scanner equipped with a wide-bore superconductive magnet. Two patients with contrast-enhancing renal masses were treated with multipolar RF ablation (Celon ProSurge). Applicator navigation and near real-time ablation monitoring were performed in a wide-bore 1.5 T scanner using adapted fluoroscopic and diagnostic sequences. In addition to T2-weighted imaging for ablation monitoring, perfusion-weighted images acquired with an arterial spin-labeling technique (FAIR-TrueFISP) were applied. Results were compared to a previous study on 12 patients performed at 0.2 T. Navigation and monitoring of RF ablation using the wide-bore system operating at 1.5 T were clearly improved compared to former experiences on a 0.2 T MR unit. Fluoroscopic and diagnostic images for MR guidance could be acquired with distinctly higher image quality and shorter acquisition time resulting in higher accuracy of applicator placement and shorter treatment time. Spin-labeling perfusion imaging exhibited good image quality, potentially providing additional clinically important information. MR-guided RF ablation of RCC can safely be performed in a 1.5 T wide-bore scanner offering higher image quality, shorter acquisition time, and new monitoring modalities not feasible at 0.2 T.
机译:进行这项研究以测试并证明使用配备宽孔超导磁体的1.5 T全身扫描仪对肾细胞癌(RCC)进行磁共振(MR)引导的射频(RF)消融的可行性。两名具有增强造影剂的肾脏肿块的患者接受了多极射频消融治疗(Celon ProSurge)。涂药器导航和近实时消融监测在宽口径1.5 T扫描仪中进行,采用了合适的荧光镜和诊断程序。除了用于消融监测的T2加权成像外,还应用了通过动脉自旋标记技术(FAIR-TrueFISP)获取的灌注加权图像。将结果与之前在0.2 T MR上进行的12例患者的研究进行了比较。与之前在0.2 T MR单元上的经验相比,使用宽孔系统在1.5 T下操作进行的射频消融导航和监测明显改善。可以以明显更高的图像质量和更短的采集时间来采集用于MR引导的荧光镜图像和诊断图像,从而提高了施药器放置的准确性和更短的治疗时间。自旋标记灌注成像表现出良好的图像质量,可能提供其他临床上重要的信息。可以在1.5 T宽口径扫描仪中安全地执行MR引导的RCC射频消融,以提供更高的图像质量,更短的采集时间,以及在0.2 T下不可行的新监测方式。

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