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每日适应性质子治疗的实验验证

Experimental validation of daily adaptive proton therapy.

作者信息

Nenoff Lena, Matter Michael, Charmillot Marjolaine, Krier Serge, Uher Klara, Weber Damien Charles, Lomax Antony John, Albertini Francesca

机构信息

Paul Scherrer Institute, Center for Proton Therapy, Switzerland.

Department of Physics, ETH Zurich, Switzerland.

出版信息

Phys Med Biol. 2021 Oct 12;66(20). doi: 10.1088/1361-6560/ac2b84.

Abstract

Anatomical changes during proton therapy require rapid treatment plan adaption to mitigate the associated dosimetric impact. This in turn requires a highly efficient workflow that minimizes the time between imaging and delivery. At the Paul Scherrer Institute, we have developed an online adaptive workflow, which is specifically designed for treatments in the skull-base/cranium, with the focus set on simplicity and minimizing changes to the conventional workflow. The dosimetric and timing performance of this daily adaptive proton therapy (DAPT) workflow has been experimentally investigated using an in-house developed DAPT software and specifically developed anthropomorphic phantom. After a standard treatment preparation, which includes the generation of a template plan, the treatment can then be adapted each day, based on daily imaging acquired on an in-room CT. The template structures are then rigidly propagated to this CT and the daily plan is fully re-optimized using the same field arrangement, DVH constraints and optimization settings of the template plan. After a dedicated plan QA, the daily plan is delivered. To minimize the time between imaging and delivery, clinically integrated software for efficient execution of all online adaption steps, as well as tools for comprehensive and automated QA checks, have been developed. Film measurements of an end-to-end validation of a multi-fraction DAPT treatment showed high agreement to the calculated doses. Gamma pass rates with a 3%/3 mm criteria were >92% when comparing the measured dose to the template plan. Additionally, a gamma pass rate >99% was found comparing measurements to the Monte Carlo dose of the daily plans reconstructed from the logfile, accumulated over the delivered fractions. With this, we experimentally demonstrate that the described adaptive workflow can be delivered accurately in a timescale similar to a standard delivery.

摘要

质子治疗过程中的解剖结构变化需要快速调整治疗计划,以减轻相关的剂量学影响。这反过来又需要一个高效的工作流程,将成像和治疗之间的时间减至最短。在保罗谢勒研究所,我们开发了一种在线自适应工作流程,该流程专为颅底/颅骨治疗而设计,重点在于简化流程并尽量减少对传统工作流程的改变。我们使用自行开发的DAPT软件和专门制作的人体模型,对这种每日自适应质子治疗(DAPT)工作流程的剂量学和时间性能进行了实验研究。在完成包括生成模板计划在内的标准治疗准备后,可根据在治疗室内CT上获取的每日影像,每天对治疗进行调整。然后将模板结构刚性映射到该CT上,并使用与模板计划相同的射野布置、剂量体积直方图(DVH)约束和优化设置,对每日计划进行全面重新优化。经过专门的计划质量保证(QA)后,即可实施每日计划。为了尽量减少成像和治疗之间的时间,我们开发了用于高效执行所有在线调整步骤的临床集成软件,以及用于全面自动QA检查的工具。对多分割DAPT治疗进行端到端验证的胶片测量结果与计算剂量高度吻合。将测量剂量与模板计划进行比较时,3%/3毫米标准下的伽马通过率>92%。此外,将测量结果与从日志文件重建的每日计划的蒙特卡罗剂量进行比较时,发现伽马通过率>99%,该剂量是在已交付的分割剂量上累积得出的。由此,我们通过实验证明,所描述的自适应工作流程能够在与标准治疗交付相似的时间范围内准确实施。

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