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基于可变形面元模型的新一代人体辐射剂量计算技术
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作者 赵日 刘兆行 +6 位作者 刘娜 王仙祥 张静 梁润成 刘鑫 令狐仁静 戴雨玲 《辐射防护》 CAS CSCD 北大核心 2023年第6期533-541,共9页
为提高人体辐射剂量计算精度,满足精准防护需求,建立了基于可变形面元模型的人体辐射剂量计算技术完整方法,包括人体数字面元模型的变形算法与面元模型高速蒙特卡罗计算方法。其中面元模型的变形采用刚体旋转矩阵、体积图拉普拉斯算子... 为提高人体辐射剂量计算精度,满足精准防护需求,建立了基于可变形面元模型的人体辐射剂量计算技术完整方法,包括人体数字面元模型的变形算法与面元模型高速蒙特卡罗计算方法。其中面元模型的变形采用刚体旋转矩阵、体积图拉普拉斯算子和近似刚体变换三种算法分别实现骨骼、软组织和内部器官的变形;模型高速蒙卡计算则基于Delaunay四面体切割技术。基于此,进行可变形面元模型与不可变形体素模型剂量计算对比试验,结果表明,蹲姿底向照射时,面元模型比直立体素模型得到的有效剂量高51.2%,器官剂量高至98.6%;跪姿前向照射时,面元模型比直立体素模型得到的有效剂量高58.7%,器官剂量高至98.0%。重点突破了新一代剂量计算技术中的面元模型变形、高速蒙特卡罗计算等关键环节,为国内进一步发展高精度剂量计算提供了重要支撑,未来有望在精准防护应用中实现人员剂量的精准评价。 展开更多
关键词 辐射剂量 面元模型 可变形 四面体切割 精准防护
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Physical dosimetric reconstruction of a case of large area back skin injury due to overexposure in an interventional procedure
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作者 Yuchen Yin Xuan Wang +8 位作者 Xianghui Kong Wenyue Zhang Yidi Wang Yuxuan Mao Jianwei Wang Tianhe Jia Yu Tu Bingjie Zhang Liang Sun 《Radiation Medicine and Protection》 2022年第1期3-8,共6页
To estimate the physical dose of skin and key organs in a case of overexposure during a cardiac interventional procedure.Methods The female patient aged 50 suffered from owerexposure during ardiac interventional thera... To estimate the physical dose of skin and key organs in a case of overexposure during a cardiac interventional procedure.Methods The female patient aged 50 suffered from owerexposure during ardiac interventional therapy in a hospital,Xinxiang city,Henan province,China in January 2020.The mesh-type phantom for the patient was constructed based on the adult mesh-type reference computational phantoms(MRCPs)released by the International Comission on Radiological Protection Publication 145 (ICRP145)and phantom deformation technology.Models of exposure scenario were constructed and simulated with particle and heavy ion transport code system(PHTTS)according to exposure conditions.Resuts:The maximum absorbed dose of key organs/tissues under iradiation in posteroanterior(PA)and 30°left anterior oblique directions(LOA)was 632.4 and 305.6 mGy,respectively.The let lung,heart,and left mammary gland received a larger dose under both iradiation conditions.The ratio of the absorbed dose with and without shielding was a lculated,and the relative difference in most organs was<1%between two directions.The iso-dose curve of the back skin revealed the ditribution of the absorbed dose(0.1-5.2 Gy).The dose estimate of key tssues/organs was higher than the conventional level,especially the local skin,up to 5.2 Gy.Concusions The interventional procedure in this ase resulted in a higher dose.Monte Carlo codes combined with the MRCPs can be employed to estimate physical dose to individuals in concrete irradia tion scenarios. 展开更多
关键词 Physical dose Dose reconstruction Digital subtraction angiography Monte Carlo codes Particle and heavy ion transport code system (PHITS) mesh-type phantoms
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