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开发和测试一种磁共振(MR)条件后装源追踪装置,用于磁共振成像引导高剂量率(HDR)近距离放射治疗中的源追踪。

Development and Testing of a Magnetic Resonance (MR) Conditional Afterloader for Source Tracking in Magnetic Resonance Imaging-Guided High-Dose-Rate (HDR) Brachytherapy.

机构信息

Department of Radiotherapy, University Medical Center Utrecht, Utrecht, The Netherlands.

Image Sciences Institute, University Medical Center Utrecht, Utrecht, The Netherlands.

出版信息

Int J Radiat Oncol Biol Phys. 2018 Nov 15;102(4):960-968. doi: 10.1016/j.ijrobp.2018.04.066. Epub 2018 May 4.

Abstract

PURPOSE

For the purpose of magnetic resonance imaging (MRI)-guided high-dose-rate (HDR) brachytherapy, a prototype magnetic resonance (MR) conditional afterloader was developed. This study demonstrates the development and testing of the prototype, while operating simultaneously with MRI. In combination with an MR-based method for HDR source localization, this development enables treatment verification of HDR brachytherapy. Additionally, this allows a direct reconstruction of the source dwell positions after catheter insertion (when using a dummy source) and introduction of a clinical workflow where the patient remains in the same position during dwell position reconstruction, treatment planning and irradiation.

METHODS AND MATERIALS

A prototype MR conditional afterloader was developed by providing radiofrequency (RF) shielding and a plastic source cable containing a dummy source. Simultaneous functioning of the afterloader and MRI acquisition was tested in an experimental setting where the afterloader was placed next to the scanner and programmed to send the source to predefined positions within a phantom, while acquiring MR images. The HDR source positions were determined using MR artifact simulation and matching of the MR images to the simulated artifact. Additionally, the impact of the presence and use of the afterloader on the MRI performance was investigated by assessment of RF interference, signal-to-noise ratio (SNR), and B field homogeneity.

RESULTS

The experiments demonstrated that the prototype MR conditional afterloader and the MRI scanner fully functioned while operating simultaneously, without influencing the other system. The step sizes between the source positions obtained from the MR images corresponded with the afterloader settings. Besides, the MRI performance tests demonstrated no deterioration due to the presence or functioning of the afterloader next to the scanner.

CONCLUSIONS

This research has demonstrated the feasibility of simultaneous MR acquisition and employment of an MR conditional afterloader. This development enables real-time HDR source localization for treatment verification of MRI-guided HDR brachytherapy using an MR conditional afterloader.

摘要

目的

为了进行磁共振成像(MRI)引导的高剂量率(HDR)近距离放射治疗,开发了一种原型磁共振(MR)条件后装器。本研究展示了原型的开发和测试,同时与 MRI 同时运行。结合基于 MRI 的 HDR 源定位方法,这一发展实现了 HDR 近距离放射治疗的治疗验证。此外,这允许在导管插入后(使用虚拟源时)直接重建源驻留位置,并引入一种临床工作流程,即患者在驻留位置重建、治疗计划和照射期间保持在同一位置。

方法和材料

通过提供射频(RF)屏蔽和包含虚拟源的塑料源电缆,开发了一种原型 MR 条件后装器。在将后装器放置在扫描仪旁边并编程将源发送到模体中的预定义位置的实验环境中,同时获取 MRI 图像,测试了后装器和 MRI 采集的同时功能。使用 MR 伪影模拟和将 MRI 图像与模拟伪影匹配来确定 HDR 源位置。此外,通过评估射频干扰、信噪比(SNR)和 B 场均匀性来研究后装器的存在和使用对 MRI 性能的影响。

结果

实验表明,原型 MR 条件后装器和 MRI 扫描仪可以在不影响另一个系统的情况下同时完全运行。从 MRI 图像中获得的源位置之间的步长与后装器设置相对应。此外,由于后装器紧邻扫描仪的存在或运行,MRI 性能测试没有恶化。

结论

这项研究证明了同时进行 MRI 采集和使用 MR 条件后装器的可行性。这种发展使我们能够使用 MR 条件后装器实时进行 HDR 源定位,从而对 MRI 引导的 HDR 近距离放射治疗进行治疗验证。

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