Aspradakis Maria M, Zucchetti Paolo
Institute of Radiation Oncology, Cantonal hospital of Lucerne, Lucerne, Switzerland.
Br J Radiol. 2015;88(1055):20150001. doi: 10.1259/bjr.20150001. Epub 2015 Jul 30.
The objective of this work was to characterize the performance of the WOmed T-200-kilovoltage (kV) therapy machine.
Mechanical functionality, radiation leakage, alignment and interlocks were investigated. Half-value layers (HVLs) (first and second HVLs) from X-ray beams generated from tube potentials between 30 and 200 kV were measured. Reference dose was determined in water. Beam start-up characteristics, dose linearity and reproducibility, beam flatness, and uniformity as well as deviations from inverse square law were assessed. Relative depth doses (RDDs) were determined in water and water-equivalent plastic. The quality assurance program included a dosimetry audit with thermoluminescent dosemeters.
All checks on machine performance were satisfactory. HVLs ranged between 0.45-4.52 mmAl and 0.69-1.78 mmCu. Dose rates varied between 0.2 and 3 Gy min(-1) with negligible time-end errors. There were differences in measured RDDs from published data. Beam outputs were confirmed with the dosimetry audit. The use of published backscatter factors was implemented to account for changes in phantom scatter for treatments with irregularly shaped fields.
Guidance on the determination of HVL and RDD in kV beams can be contradictory. RDDs were determined through measurement and curve fitting. These differed from published RDD data, and the differences observed were larger in the low-kV energy range.
This article reports on the comprehensive and novel approach to the acceptance, commissioning and clinical use of a modern kV therapy machine. The challenges in the dosimetry of kV beams faced by the medical physicist in the clinic are highlighted.
本研究旨在对WOmed T - 200千伏(kV)治疗机的性能进行表征。
对机械功能、辐射泄漏、校准和联锁装置进行了研究。测量了管电压在30至200 kV之间产生的X射线束的半值层(HVLs)(第一和第二HVLs)。在水中确定参考剂量。评估了束流启动特性、剂量线性和重复性、束流平整度和均匀性以及与反平方定律的偏差。在水和水等效塑料中确定相对深度剂量(RDDs)。质量保证计划包括使用热释光剂量计进行剂量学审核。
所有机器性能检查均令人满意。HVLs范围在0.45 - 4.52 mmAl和0.69 - 1.78 mmCu之间。剂量率在0.2至3 Gy min⁻¹之间变化,时间终点误差可忽略不计。测量的RDDs与已发表数据存在差异。通过剂量学审核确认了束流输出。采用已发表的反向散射因子来考虑不规则形状射野治疗中模体散射的变化。
关于kV线束中HVL和RDD测定的指导可能相互矛盾。通过测量和曲线拟合确定了RDDs。这些结果与已发表的RDD数据不同,且在低kV能量范围内观察到的差异更大。
本文报道了一种现代kV治疗机验收、调试和临床使用的全面且新颖的方法。强调了临床医疗物理学家在kV线束剂量学中面临的挑战。