Gates Larry L, Gladstone David J
Norris Cotton Cancer Center, Geisel School of Medicine at Dartmouth.
J Appl Clin Med Phys. 2015 Nov 8;16(6):130–138. doi: 10.1120/jacmp.v16i6.5531.
Brass compensators for beam modulation present an alternative method for IMRT treatment planning to traditional dynamic leaf modulation. In this work, we present a detailed method to commission the Pinnacle treatment planning system for IMRT using brass compensators. Beam attenuation from various brass thicknesses were measured using an ion chamber, as well as a MapCHECK device, for a representative seven-field IMRT plan. We show that Pinnacle's parameters for compensators can be optimized to match the measured results while still maintaining the original open-beam model. Only Pinnacle's modified scatter factor and brass density value were adjusted. Beam attenuation in several brass slabs were optimized by minimizing a χ(2) function of measured and modeled data for several depths in solid water. Using MapCHECK, Pinnacle's parameters were optimized by minimizing the number of points that fail during a gamma analysis of seven fields in a typical IMRT plan. Our results show that Pinnacle's 10X beam is best modeled using a brass density of 7.8 g/cm(3) and a modified scatter factor of 0.1 cm(-1).
用于射束调制的黄铜补偿器为调强放射治疗(IMRT)治疗计划提供了一种不同于传统动态叶片调制的方法。在这项工作中,我们提出了一种使用黄铜补偿器对Pinnacle治疗计划系统进行IMRT调试的详细方法。对于一个具有代表性的七野IMRT计划,使用电离室以及MapCHECK设备测量了不同厚度黄铜的射束衰减。我们表明,Pinnacle补偿器的参数可以进行优化以匹配测量结果,同时仍保持原始的开束模型。仅调整了Pinnacle的修正散射因子和黄铜密度值。通过最小化固体水中几个深度处测量数据与建模数据的χ(2)函数,优化了几块黄铜板中的射束衰减。使用MapCHECK,通过最小化典型IMRT计划中七野伽马分析期间失败的点数来优化Pinnacle的参数。我们的结果表明,使用7.8 g/cm(3)的黄铜密度和0.1 cm(-1)的修正散射因子对Pinnacle的10X射束进行建模效果最佳。