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首页> 外文期刊>Iranian Journal of Nuclear Medicine >Cellular S-value of beta emitter radionuclide’s determined using Geant4 Monte Carlo toolbox, comparison to MIRD S-values
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Cellular S-value of beta emitter radionuclide’s determined using Geant4 Monte Carlo toolbox, comparison to MIRD S-values

机译:使用Geant4蒙特卡洛工具箱确定的β发射核素的细胞S值,与MIRD S值进行比较

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Introduction: Spatial dose distribution around the radionuclides sources is required for optimized treatment planning in radioimmunotherapy. At present, the main source of data for cellular dosimetry is the s-values provided by MIRD. However, the MIRD s-values have been calculated based on analytical formula in which no electrons straggling is taken to account. In this study, we used Geant4-DNA Monte Carlo toolbox to calculate s-values and the results were compared to the corresponding MIRD data. Methods:Similar to MIRD cell model, two concentric spheres representing the cell and its nucleus were used as the geometry of simulation. The cells were assumed to be made of water. Cellular s-values were calculated for three beta emitter radionuclides 131I, 90Y and 177Lu that are widely used in radioimmunotherapy. Few lines of code in C++ were added into Geant4-DNA codes to automatically calculate the s-values and transfer data into excel files. Results:The differences between two series of data were analyzed using Pearson’s correlation and Bland-Altman curves. We observed high correlation (R2>0.99) between two series of data for self-absorption; however, the agreement was very weak and Wilcoxon signed rank test showed significant difference (p-value
机译:简介:放射性核素源周围的空间剂量分布是放射免疫治疗中优化治疗计划所需的。目前,细胞剂量测定的主要数据来源是MIRD提供的s值。但是,MIRD s值是根据解析公式计算的,其中没有考虑电子散逸。在这项研究中,我们使用Geant4-DNA蒙特卡洛工具箱来计算s值,并将结果与​​相应的MIRD数据进行比较。方法:类似于MIRD细胞模型,使用两个代表细胞及其核的同心球作为模拟几何。假定电池是由水制成的。计算了在放射免疫疗法中广泛使用的三种β发射核素131I,90Y和177Lu的细胞s值。很少将C ++中的代码行添加到Geant4-DNA代码中,以自动计算s值并将数据传输到excel文件中。结果:使用Pearson相关性和Bland-Altman曲线分析了两个系列数据之间的差异。我们观察到两个系列的自吸收数据之间具有高度相关性(R2> 0.99)。但是,协议非常薄弱,Wilcoxon签署的等级检验显示出显着差异(p值

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