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Towards Effective and Efficient Patient-Specific Quality Assurance for Spot Scanning Proton Therapy

机译:寻求针对点扫描质子治疗的有效和高效的针对患者的质量保证

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摘要

An intensity-modulated proton therapy (IMPT) patient-specific quality assurance (PSQA) program based on measurement alone can be very time consuming due to the highly modulated dose distributions of IMPT fields. Incorporating independent dose calculation and treatment log file analysis could reduce the time required for measurements. In this article, we summarize our effort to develop an efficient and effective PSQA program that consists of three components: measurements, independent dose calculation, and analysis of patient-specific treatment delivery log files. Measurements included two-dimensional (2D) measurements using an ionization chamber array detector for each field delivered at the planned gantry angles with the electronic medical record (EMR) system in the QA mode and the accelerator control system (ACS) in the treatment mode, and additional measurements at depths for each field with the ACS in physics mode and without the EMR system. Dose distributions for each field in a water phantom were calculated independently using a recently developed in-house pencil beam algorithm and compared with those obtained using the treatment planning system (TPS). The treatment log file for each field was analyzed in terms of deviations in delivered spot positions from their planned positions using various statistical methods. Using this improved PSQA program, we were able to verify the integrity of the data transfer from the TPS to the EMR to the ACS, the dose calculation of the TPS, and the treatment delivery, including the dose delivered and spot positions. On the basis of this experience, we estimate that the in-room measurement time required for each complex IMPT case (e.g., a patient receiving bilateral IMPT for head and neck cancer) is less than 1 h using the improved PSQA program. Our experience demonstrates that it is possible to develop an efficient and effective PSQA program for IMPT with the equipment and resources available in the clinic.
机译:仅基于测量的强度调制质子治疗(IMPT)特定于患者的质量保证(PSQA)程序可能会非常耗时,因为IMPT场的剂量分布受到高度调制。结合独立的剂量计算和治疗日志文件分析可以减少测量所需的时间。在本文中,我们总结了开发高效,有效的PSQA程序的工作,该程序包括三个部分:测量,独立剂量计算以及对患者特定的治疗实施日志文件的分析。测量包括使用电离室阵列检测器对以计划的机架角度传送的每个场进行二维(2D)测量,其中QA模式下的电子病历(EMR)系统和治疗模式下的加速器控制系统(ACS)在没有EMR系统的情况下,采用ACS的物理模式在每个场的深度进行附加测量。使用最新开发的内部铅笔束算法独立计算水幻影中每个场的剂量分布,并将其与使用治疗计划系统(TPS)获得的剂量分布进行比较。使用各种统计方法,根据交付点位置与计划位置的偏差分析了每个字段的处理日志文件。使用此改进的PSQA程序,我们能够验证从TPS到EMR到ACS的数据传输的完整性,TPS的剂量计算以及治疗的交付,包括交付的剂量和点位置。根据这一经验,我们估计,使用改进的PSQA程序,每个复杂IMPT病例(例如,接受头颈癌双侧IMPT的患者)所需的室内测量时间不到1小时。我们的经验表明,可以利用诊所可用的设备和资源为IMPT制定有效的PSQA计划。

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