Center for Proton Therapy- Paul Scherrer Institute, Villigen, Switzerland.
Department of Physics, ETH Zurich, Zurich, Switzerland.
Phys Med Biol. 2024 Nov 11;69(21). doi: 10.1088/1361-6560/ad7cbd.
This study presents the first clinical implementation of an efficient online daily adaptive proton therapy workflow (DAPT).The DAPT workflow includes awhere aand aare optimized on the planning computed tomography (CT). In the, theis re-optimized on daily images from an in-room CT. Daily structures are rigidly propagated from the planning CT. Automated Quality Assurance (QA) involves geometric, sanity checks and an independent dose calculation from the machine files. Differences from the template plan are analyzed field-by-field, and clinical plan is assessed by reviewing the achieved clinical goals using a traffic light protocol. If the daily adapted plan fails any QA or clinical goals, the fallback plan is used. In thethe delivered dose is recalculated from log-files onto the daily CT, and a gamma analysis is performed (3%/3 mm). The DAPT workflow has been applied to selected adult patients treated in rigid anatomy for the last serie of the treatment between October 2023 and April 2024.DAPT treatment sessions averaged around 23 min [range: 15-30 min] and did not exceed the typical 30 minute time slot. Treatment adaptation, including QA and clinical plan assessment, averaged just under 7 min [range: 3:30-16 min] per fraction. All plans passed the online QAs steps. In the offline phase a good agreement with the log-files reconstructed dose was achieved (minimum gamma pass rate of 97.5%). The online adapted plan was delivered for >85% of the fractions. In 92% of total fractions, adapted plans exhibited improved individual dose metrics to the targets and/or organs at risk.This study demonstrates the successful implementation of an online daily DAPT workflow. Notably, the duration of a DAPT session did not exceed the time slot typically allocated for non-DAPT treatment. As far as we are aware, this is a first clinical implementation of daily online adaptive proton therapy.
本研究展示了高效在线日常自适应质子治疗工作流程(DAPT)的首次临床实施。DAPT 工作流程包括在计划计算机断层扫描(CT)上优化和。在中,从室内 CT 上每日图像重新优化。每日结构从计划 CT 中刚性传播。自动化质量保证(QA)涉及几何、合理性检查和来自机器文件的独立剂量计算。与模板计划的差异逐字段进行分析,并使用红绿灯协议通过审查实现的临床目标来评估临床计划。如果每日自适应计划未能通过任何 QA 或临床目标,则使用后备计划。在中,从日志文件重新计算传递剂量到每日 CT 上,并进行伽马分析(3%/3 毫米)。DAPT 工作流程已应用于 2023 年 10 月至 2024 年 4 月治疗的最后一系列中接受刚性解剖治疗的选定成年患者。DAPT 治疗疗程平均约为 23 分钟[范围:15-30 分钟],且不超过典型的 30 分钟时间槽。治疗适应,包括 QA 和临床计划评估,平均每个分数不到 7 分钟[范围:3:30-16 分钟]。所有计划都通过了在线 QA 步骤。在离线阶段,与日志文件重建剂量达到了很好的一致性(最小伽马通过率为 97.5%)。在线自适应计划用于超过 85%的分数。在总分数的 92%中,适应计划显示出对靶区和/或危及器官的个体剂量指标的改善。本研究证明了在线日常 DAPT 工作流程的成功实施。值得注意的是,DAPT 疗程的持续时间没有超过通常为非 DAPT 治疗分配的时间槽。据我们所知,这是首次临床实施每日在线自适应质子治疗。