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磁共振引导放射治疗中金属探针的实时主动磁共振追踪

Real-time active MR-tracking of metallic stylets in MR-guided radiation therapy.

作者信息

Wang Wei, Dumoulin Charles L, Viswanathan Akila N, Tse Zion T H, Mehrtash Alireza, Loew Wolfgang, Norton Isaiah, Tokuda Junichi, Seethamraju Ravi T, Kapur Tina, Damato Antonio L, Cormack Robert A, Schmidt Ehud J

机构信息

Radiology, Brigham and Women's Hospital, Boston, Massachusetts, USA; Radiation Oncology, Brigham and Women's Hospital, Boston, Massachusetts, USA.

出版信息

Magn Reson Med. 2015 May;73(5):1803-11. doi: 10.1002/mrm.25300. Epub 2014 Jun 5.

Abstract

PURPOSE

To develop an active MR-tracking system to guide placement of metallic devices for radiation therapy.

METHODS

An actively tracked metallic stylet for brachytherapy was constructed by adding printed-circuit micro-coils to a commercial stylet. The coil design was optimized by electromagnetic simulation, and has a radio-frequency lobe pattern extending ∼5 mm beyond the strong B0 inhomogeneity region near the metal surface. An MR-tracking sequence with phase-field dithering was used to overcome residual effects of B0 and B1 inhomogeneities caused by the metal, as well as from inductive coupling to surrounding metallic stylets. The tracking system was integrated with a graphical workstation for real-time visualization. The 3 Tesla MRI catheter-insertion procedures were tested in phantoms and ex vivo animal tissue, and then performed in three patients during interstitial brachytherapy.

RESULTS

The tracking system provided high-resolution (0.6 × 0.6 × 0.6 mm(3) ) and rapid (16 to 40 frames per second, with three to one phase-field dithering directions) catheter localization in phantoms, animals, and three gynecologic cancer patients.

CONCLUSION

This is the first demonstration of active tracking of the shaft of metallic stylet in MR-guided brachytherapy. It holds the promise of assisting physicians to achieve better targeting and improving outcomes in interstitial brachytherapy.

摘要

目的

开发一种主动式磁共振跟踪系统,用于指导放射治疗中金属装置的放置。

方法

通过在商用探针上添加印刷电路微线圈,构建了一种用于近距离放射治疗的主动跟踪金属探针。通过电磁模拟对线圈设计进行了优化,其射频叶模式在金属表面附近强B0不均匀区域之外延伸约5毫米。使用具有相场抖动的磁共振跟踪序列来克服由金属引起的B0和B1不均匀性的残余效应,以及与周围金属探针的感应耦合。该跟踪系统与图形工作站集成,用于实时可视化。在体模和离体动物组织中测试了3特斯拉MRI导管插入程序,然后在三名患者的组织间近距离放射治疗过程中进行了测试。

结果

该跟踪系统在体模、动物和三名妇科癌症患者中提供了高分辨率(0.6×0.6×0.6毫米³)和快速(每秒16至40帧,具有三到一个相场抖动方向)的导管定位。

结论

这是首次在磁共振引导的近距离放射治疗中对金属探针杆进行主动跟踪的演示。它有望帮助医生实现更好的靶向,并改善组织间近距离放射治疗的效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad59/4257908/8cca695282a1/nihms596442f1.jpg

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