Institute of Medical Technology, Otto von Guericke University, Magdeburg, Germany.
Physics Department, Hakim Sabzevari University, Sabzevar, Iran.
Appl Radiat Isot. 2024 Feb;204:111117. doi: 10.1016/j.apradiso.2023.111117. Epub 2023 Nov 23.
Brachytherapy of superficial skin tumors using beta-emitting sources is a method that has been investigated by some researchers in both simulation and experimental studies with promising results. In the current study, the effect of geometrical parameters of some relevant radionuclides including Y-90, Re-188, P-32, and Ho-166 on the depth dose distribution in skin tissue has been investigated through Monte Carlo simulation. MCNPX Monte Carlo code was employed to model the above-mentioned patch sources in cylindrical format and then the effect of patch geometrical parameters including the source-to-skin distance (SSD), patch thickness, and patch diameter on depth dose distribution was assessed through modeling and calculation of the dose inside a cubic phantom mimicking the skin tissue. The obtained results demonstrated that increasing the SSD, patch thickness, and patch diameter (with the same activity) will reduce the depth dose distribution. Changing the SSD has a more significant effect on the dose gradient within the depth than other geometrical parameters. It was also observed that the effect of patch diameter on the skin-delivered dose gets less sensible as the patch size goes beyond the range of beta radiation inside tissue. Finally, it can be concluded that the patch source geometrical parameters can affect the depth dose distribution inside the skin tissue. This fact may be of concern regarding the delivery of a high radiation dose in a single treatment session. Therefore, variations of patch source geometrical parameters should be considered during the skin dose calculation plan.
β 放射性核素敷贴治疗浅表皮肤肿瘤是一种已在模拟和实验研究中被一些研究人员研究的方法,结果有一定的前景。在本研究中,通过蒙特卡罗模拟研究了一些相关放射性核素(包括 Y-90、Re-188、P-32 和 Ho-166)的几何参数对皮肤组织中深度剂量分布的影响。使用 MCNPX 蒙特卡罗代码对圆柱形的上述贴片源进行建模,然后通过建模和计算立方模拟皮肤组织的体模内的剂量来评估贴片几何参数(包括源皮距(SSD)、贴片厚度和贴片直径)对深度剂量分布的影响。结果表明,增加 SSD、贴片厚度和贴片直径(活性相同)会降低深度剂量分布。与其他几何参数相比,改变 SSD 对深度内剂量梯度的影响更大。还观察到,随着贴片尺寸超出组织内β 辐射范围,贴片直径对皮肤剂量的影响变得不那么敏感。最后,可以得出结论,贴片源几何参数会影响皮肤组织内的深度剂量分布。这一事实可能会引起单次治疗中高剂量辐射的担忧。因此,在皮肤剂量计算计划中应考虑贴片源几何参数的变化。