Baradaran-Ghahfarokhi Milad, Reynoso Francisco, Sun Baozhou, Darafsheh Arash, Prusator Michael T, Mutic Sasa, Zhao Tianyu
Department of Radiation Oncology, Washington University, St. Louis, MO, USA.
Med Phys. 2020 Sep;47(9):4509-4521. doi: 10.1002/mp.14299. Epub 2020 Jun 25.
To calculate in- and out-of-field neutron spectra and dose equivalent, using Monte Carlo (MC) simulation, for a Mevion gantry-mounted passively scattered proton system in craniospinal irradiation. An analytical model based on the MC calculations that estimates in- and out-of-field neutron dose equivalent from proton Craniospinal irradiation (CSI) was also developed.
The MCNPX MC code was used to simulate a Mevion S250 proton therapy system. The simulated proton depth doses and profiles for pristine and spread-out Bragg peaks were benchmarked against the measured data. Previous measurements using extended-range Bonner spheres were used to verify the calculated neutron spectra and dose equivalent. Using the benchmarked results as a reference condition, a correction-based analytical model was reconstructed by fitting the data to derive model parameters at 95% confidence interval. Sensitivity analysis of brass aperture opening, thickness of the Lucite (PMMA) range compensator, and modulation width was performed to obtain correction parameters for nonreference conditions.
For the neutron dose equivalent per therapeutic proton dose, the MCNPX calculated dose equivalent matched the measured values to within 8%. The benchmarked neutron dose equivalent at the isocenter was 41.2 and 20.8 mSv/Gy, for cranial and spinal fields, respectively. For in- and out-of-field neutron dose calculations, the correction-based analytical model showed up to 17% discrepancy compared to the MC calculations. The correction factors may provide a conservative estimation of neutron dose, especially for depth ≤ 5 cm and regions underneath the brass aperture.
The proposed analytical model can be used to estimate the contribution of the neutron dose to the overall CSI treatment dose. Moreover, the model can be employed to estimate the neutron dose to the implantable cardiac electronic devices.
使用蒙特卡罗(MC)模拟计算用于颅脊髓照射的Mevion龙门式被动散射质子系统的野内和野外中子能谱及剂量当量。还开发了一种基于MC计算的分析模型,用于估计质子颅脊髓照射(CSI)的野内和野外中子剂量当量。
使用MCNPX MC代码模拟Mevion S250质子治疗系统。将模拟的质子深度剂量和原始及扩展布拉格峰的剂量分布与测量数据进行基准对比。先前使用扩展范围的邦纳球进行的测量用于验证计算出的中子能谱和剂量当量。以基准结果作为参考条件,通过拟合数据重建基于校正的分析模型,以在95%置信区间得出模型参数。对黄铜准直器开口、有机玻璃(聚甲基丙烯酸甲酯)射程补偿器厚度和调制宽度进行敏感性分析,以获得非参考条件下的校正参数。
对于每治疗质子剂量下的中子剂量当量,MCNPX计算的剂量当量与测量值的匹配度在8%以内。颅部和脊髓野在等中心处的基准中子剂量当量分别为41.2和2-0.8 mSv/Gy。对于野内和野外中子剂量计算,基于校正的分析模型与MC计算相比显示出高达17%的差异。校正因子可能对中子剂量提供保守估计,尤其是对于深度≤5 cm和黄铜准直器下方的区域。
所提出的分析模型可用于估计中子剂量对整体CSI治疗剂量的贡献。此外,该模型可用于估计植入式心脏电子设备的中子剂量。