Zeidan Omar A, Pepmiller Ethan, Willoughby Twyla, Li Zhiqiu, Burkavage James, Harper Brian, Fraser Michael, Moffatt Katie, Meeks Sanford L, Ramakrishna Naren
Department of Radiation Oncology, Orlando Health Cancer Institute, Orlando, FL, USA.
Int J Part Ther. 2022 Jul 1;9(2):10-19. doi: 10.14338/IJPT-21-00033.1. eCollection 2022 Fall.
We present an analysis of various operational metrics for a novel compact proton therapy system, including clinical case mix, subsystems utilization, and quality assurance trends in beam delivery parameters over a period of 5 years.
Patient-specific data from a total of 850 patients (25,567 fractions) have been collected and analyzed. The patient mix include a variety of simple, intermediate, and complex cases. Beam-specific delivery parameters for a total of 3585 beams were analyzed. In-room imaging system usage for off-line adaptive purpose is reported. We also report key machine performances metrics based on routine quality assurance in addition to uptime.
Our analysis shows that system subcomponents including gantry and patient positioning system have maintained a tight mechanical tolerance over the 5-year period. Various beam parameters were all within acceptable tolerances with no clear trends. Utilization frequency histograms of gantry and patient positioning system show that only a small fraction of all available angles was used for patient deliveries with cardinal angels as the most usable. Similarly, beam-specific metrics, such as range, modulation, and air gaps, were clustered unevenly over the available range indicating that this compact system was more than capable to treat the complex variety of tumors of our patient mix.
Our data show that this compact system is versatile, robust, and capable of delivering complex treatments like a large full-gantry system. Utilization data show that a fraction of all subcomponents range of angular motion has been used. Compilation of beam-specific metrics, such as range and modulation, show uneven distributions with specific clustering over the entire usable range. Our findings could be used to further optimize the performance and cost-effectiveness of future compact proton systems.
我们对一种新型紧凑型质子治疗系统的各种运行指标进行了分析,包括临床病例组合、子系统利用率以及5年期间束流传输参数的质量保证趋势。
收集并分析了总共850例患者(25567分次)的特定患者数据。患者组合包括各种简单、中等和复杂病例。分析了总共3585束束流的特定束流传输参数。报告了用于离线自适应目的的室内成像系统使用情况。除正常运行时间外,我们还报告了基于常规质量保证的关键机器性能指标。
我们的分析表明,包括龙门架和患者定位系统在内的系统子部件在5年期间保持了严格的机械公差。各种束流参数均在可接受的公差范围内,没有明显趋势。龙门架和患者定位系统的使用频率直方图显示,在所有可用角度中,只有一小部分用于患者治疗,其中主要角度是最常用的。同样,特定束流的指标,如射程、调制和空气间隙在可用范围内分布不均匀,这表明这种紧凑型系统完全有能力治疗我们患者组合中复杂多样的肿瘤。
我们的数据表明,这种紧凑型系统用途广泛、坚固耐用,能够像大型全龙门系统一样进行复杂治疗。使用数据表明,所有子部件角运动范围的一部分已被使用。特定束流指标(如射程和调制)的汇编显示,在整个可用范围内分布不均匀且有特定聚类。我们的研究结果可用于进一步优化未来紧凑型质子系统的性能和成本效益。