Mans Anton, Rozendaal Roel, Janssen Tomas, Damen Eugène, Kaas Jochem, van Mourik Anke, Mijnheer Ben
Department of Radiation Oncology, The Netherlands Cancer Institute, Amsterdam, The Netherlands.
Phys Imaging Radiat Oncol. 2022 Jan 20;21:6-10. doi: 10.1016/j.phro.2022.01.001. eCollection 2022 Jan.
Dosimetric patient-Specific Quality Assurance (PSQA) data contain in addition to cases with alerts, many cases without alerts. The aim of this study was to present a procedure to investigate long-term trend analysis of the complete set of PSQA data for the presence of site-specific deviations to reduce underlying systematic dose uncertainties.
The procedure started by analysing a large set of prostate Volumetric Modulated Arc Therapy (VMAT) PSQA data obtained by comparing 3D electronic portal image device (EPID)_based dosimetry measurements with dose values predicted by the Treatment Planning System (TPS). If systematic deviations were present, several actions were required. These included confirmation of these deviations with an independent dose verification system for which a 2D detector array in a phantom was used, and analysing calculated with measured PSQA data, or delivery machine characteristics. Further analysis revealed that the under-dosage correlated with plan complexity and coincided with changes in clinically applied planning techniques.
Prostate VMAT PSQA data showed an under-dosage gradual increasing to about 2% in 3 years, which was confirmed by the measurements with the 2D detector array in a phantom. The implementation of new beam fits in the TPS led to a reduction of the observed deviations.
Long-term analysis of site-specific PSQA data is a useful method to monitor incremental changes in a radiotherapy department due to various changes in the treatment planning and delivery of prostate VMAT, and may lead to a reduction of systematic dose uncertainties in complex treatments.
剂量学患者特定质量保证(PSQA)数据中,除了有警示的病例外,还有许多无警示的病例。本研究的目的是提出一种程序,用于调查整套PSQA数据的长期趋势分析,以确定是否存在特定部位偏差,从而降低潜在的系统剂量不确定性。
该程序首先分析大量前列腺容积调强弧形治疗(VMAT)PSQA数据,这些数据通过将基于三维电子射野影像装置(EPID)的剂量测定测量值与治疗计划系统(TPS)预测的剂量值进行比较获得。如果存在系统偏差,则需要采取若干措施。这些措施包括使用体模中的二维探测器阵列的独立剂量验证系统确认这些偏差,以及分析计算得到的与实测的PSQA数据或放疗设备特性。进一步分析表明,剂量不足与计划复杂性相关,并且与临床应用的计划技术变化一致。
前列腺VMAT的PSQA数据显示,3年内剂量不足逐渐增加至约2%,这通过体模中二维探测器阵列的测量得到证实。TPS中实施新的射束拟合导致观察到的偏差减少。
对特定部位PSQA数据进行长期分析是一种有用的方法,可用于监测放疗科因前列腺VMAT治疗计划和实施的各种变化而产生的增量变化,并可能降低复杂治疗中系统剂量的不确定性。