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作 者:卢文婷[1] 时颖华[1] 周凌宏[1] 甄鑫[1] 刘迎军[1] 张书旭[2]
机构地区:[1]南方医科大学生物医学工程学院,广州510515 [2]广州医学院附属肿瘤医院放疗中心,广州510095
出 处:《生物医学工程学杂志》2012年第2期237-241,共5页Journal of Biomedical Engineering
基 金:国家自然科学基金资助项目(30970866);广东省重点科技计划项目资助(2008A030102011)
摘 要:验证DPM蒙特卡罗剂量计算算法预测均匀组织和非均匀组织剂量的精确性。DPM分别计算:①6 MeV单能光子3cm×3cm照射野和Varian 60℃加速器源水模体百分深度剂量曲线和10cm深度处离轴比;②6 MeV单能光子3cm×3cm、10cm×10cm照射野分别在水(6cm)/肺(6cm)/水(8cm)、水(6cm)/骨骼(2cm)/水(12cm)非均匀组织的百分深度剂量曲线;③6MeV单能光子6cm×6cm照射野人体头部和腹部组织在射野内和射野外的百分深度剂量曲线。比较DPM计算值与DOSXYZnrc/EGSnrc系统在相同条件下的计算值。结果显示二者计算值在水模中的误差在±3%以内,在非均匀组织中,除了个别点,误差都在±3%以内。DPM能够精确计算均匀组织和非均匀组织剂量。The present paper is to verify the accuracy of DPM,a Monte Carlo-based dose calculation algorithm,in homogeneous and inhomogeneous tissues.DPM was applied to calculate ① depth dose curves and off-axis ratios at a depth of 10cm in water using a 6MeV photon beam with a 3cm×3cm field and phase space file simulated Varian 60℃ medical linear accelerator with a 10cm×10cm field at SSD=100(cm);②depth dose curves using 6MeV photon beam in inhomogeneous tissues,such as water(6cm)/lung(6cm)/water(8cm) with a 3cm×3cm field and water(6 cm)/bone(2cm)/water(12cm)with a 10cm×10cm field;③depth dose curves using 6MeV photon beam based on the CT data of a patient's head and abdomen.The doses based on DPM are compared to the doses calculated by DOSXYZnrc under the same condition.The error was within 3% in water phantom while the error was within 3% in inhomogeneous tissues,except a few points.It has been concluded that the DPM can accurately predict the dose to homogeneous and inhomogeneous tissues.
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