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Evaluation of the eclipse electron Monte Carlo dose calculation for small fields

机译:小田间日食电子蒙特卡罗剂量计算的评估

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摘要

Varian Medical Systems (Palo Alto, CA) has implemented the Monte Carlo electron dose calculation algorithm (eMC) in the Eclipse treatment planning system. Previous algorithms for electron treatment planning were limited in their calculation ability for small field depth doses and monitor units. An old rule of thumb to approximate the limiting cutout size for an electron field was determined by the lateral scatter equilibrium and approximated by E (MeV)/2.5 in centimeters of water. In this study, we compared eMC calculations and measurements of depth doses, isodose distributions, and monitor units for several different energy and small field cutout size combinations at different SSDs. Measurements were made using EBT film (International Specialty Products, Wayne, NJ) and a PinPoint ion chamber (PTW‐New York Corp., Hicksville, NY). Our results indicate that the eMC algorithm can accurately predict depth doses, isodose distributions, and monitor units (within 2.5%) for field sizes as small as 3.0 cm diameter for energies in the 6 to 20 MeV range at 100 cm SSD. Therefore, the previous energy dependent rule of thumb does not apply to the Eclipse electron Monte Carlo code. However, at extended SSDs (105–110 cm), the results show good agreement (within 4%) only for higher energies (12, 16, and 20 MeV) for a field size of 3 cm.PACS number: 87.53.Hv
机译:瓦里安医疗系统公司(加利福尼亚州帕洛阿尔托)已在Eclipse治疗计划系统中实施了蒙特卡洛电子剂量计算算法(eMC)。先前的电子治疗计划算法在计算小场深剂量和监测单元方面的能力受到限制。通过横向散射平衡确定近似于电子场的极限切口尺寸的经验法则,并以E(MeV)/2.5厘米水为单位进行近似。在这项研究中,我们比较了eMC的计算和深度剂量,等剂量分布以及监测单元在不同SSD处的几种不同能量和小场切口尺寸组合的测量结果。使用EBT胶片(国际特种产品公司,新泽西州韦恩)和PinPoint离子室(PTW-纽约公司,纽约州希克斯维尔)进行测量。我们的结果表明,对于100 cm SSD处6至20 MeV范围内的能量,eMC算法可以准确地预测深度剂量,等剂量分布和监视单位(2.5%以内)的磁场大小,直径为3.0 cm。因此,先前依赖于能量的经验法则不适用于Eclipse电子蒙特卡洛代码。但是,对于扩展的固态硬盘(105-110厘米),结果表明,只有在3厘米的电场大小(12、16和20 MeV)下使用更高的能量(4%内)才具有良好的一致性。PACS编号:87.53.Hv

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