Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou, China.
University of Chinese Academy of Sciences, Beijing, China.
PLoS One. 2021 Apr 1;16(4):e0249452. doi: 10.1371/journal.pone.0249452. eCollection 2021.
The dose uniformity and penumbra in the treatment field are important factors in radiotherapy, which affects the outcomes of radiotherapy. In this study, the integrated depth-dose-distributions (IDDDs) of 190 MeV/u and 260 MeV/u carbon beams in the active spot-scanning delivery system were measured and calculated by FLUKA Monte Carlo simulation based on the Heavy Ion Medical Machine (HIMM). Considering the dose distributions caused by secondary particles and scattering, we also used different types of pencil beam (PB) models to fit and compare the spatial distributions of PB. We superposed a bunch of PB to form a 20×20 cm2 treatment field with the double Gaussian and double Gaussian logistic beam models and calculated the influence of beam delivery error on the field flatness and penumbra, respectively. The simulated IDDDs showed good agreement with the measured values. The triple Gaussian and double Gaussian logistic beam models have good fitness to the simulated dose distributions. There are different influences on dose uniformity and penumbra resulting from beam uncertainties. These results would be helpful for understanding carbon ion therapy, and physical therapists are more familiar with beam characteristics for active scanning therapy, which provides a reference for commissioning and optimization of treatment plans in radiotherapy.
在放射治疗中,剂量均匀性和治疗野半影是重要因素,它们会影响放射治疗的效果。在这项研究中,我们基于重离子医疗设备(HIMM)利用 FLUKA 蒙特卡罗模拟测量和计算了活性斑点扫描输送系统中 190 MeV/u 和 260 MeV/u 碳离子束的积分深度剂量分布(IDDD)。考虑到次级粒子和散射引起的剂量分布,我们还使用了不同类型的铅笔束(PB)模型来拟合和比较 PB 的空间分布。我们通过叠加一簇 PB 来形成一个 20×20 cm2 的治疗野,使用双高斯和双高斯逻辑束模型,并分别计算了束流输送误差对场平坦度和半影的影响。模拟的 IDDD 与测量值吻合良好。三重高斯和双高斯逻辑束模型对模拟剂量分布具有良好的拟合度。束流不确定性对剂量均匀性和半影有不同的影响。这些结果有助于理解碳离子治疗,物理治疗师更熟悉主动扫描治疗的束特性,为放射治疗中的计划调试和优化提供了参考。