Elekta Limited, Cornerstone, London Road, Crawley, RH10 9BL, United Kingdom.
Philips Healthcare, Vantaa, Finland.
Med Phys. 2021 May;48(5):e67-e85. doi: 10.1002/mp.14764. Epub 2021 Apr 1.
Over the last few years, magnetic resonance image-guided radiotherapy systems have been introduced into the clinic, allowing for daily online plan adaption. While quality assurance (QA) is similar to conventional radiotherapy systems, there is a need to introduce or modify measurement techniques. As yet, there is no consensus guidance on the QA equipment and test requirements for such systems. Therefore, this report provides an overview of QA equipment and techniques for mechanical, dosimetric, and imaging performance of such systems and recommendation of the QA procedures, particularly for a 1.5T MR-linac device. An overview of the system design and considerations for QA measurements, particularly the effect of the machine geometry and magnetic field on the radiation beam measurements is given. The effect of the magnetic field on measurement equipment and methods is reviewed to provide a foundation for interpreting measurement results and devising appropriate methods. And lastly, a consensus overview of recommended QA, appropriate methods, and tolerances is provided based on conventional QA protocols. The aim of this consensus work was to provide a foundation for QA protocols, comparative studies of system performance, and for future development of QA protocols and measurement methods.
在过去的几年中,磁共振引导放射治疗系统已被引入临床,允许每日在线计划自适应。虽然质量保证(QA)与传统放射治疗系统相似,但需要引入或修改测量技术。到目前为止,还没有关于此类系统的 QA 设备和测试要求的共识指南。因此,本报告概述了此类系统的机械、剂量学和成像性能的 QA 设备和技术,以及 QA 程序的建议,特别是对于 1.5T MR-直线加速器设备。概述了系统设计和 QA 测量的注意事项,特别是机器几何形状和磁场对辐射束测量的影响。审查了磁场对测量设备和方法的影响,为解释测量结果和设计适当的方法提供了基础。最后,根据传统的 QA 协议,提供了推荐的 QA、适当的方法和公差的共识概述。这项共识工作的目的是为 QA 协议、系统性能的比较研究以及未来的 QA 协议和测量方法的发展提供基础。