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Radial dose distributions from protons of therapeutic energies calculated with Geant4-DNA

机译:用Geant4-DNA计算的治疗能量质子的径向剂量分布

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Models based on the amorphous track structure approximation have been successful in predicting the biological effects of heavy charged particles. Development of such models remains an active area of research that includes applications to hadrontherapy. In such models, the radial distribution of the dose deposited by delta electrons and directly by the particle is the main characteristic of track structure. We calculated these distributions with Geant4-DNA Monte Carlo code for protons in the energy range from 10 to 100 MeV. These results were approximated by a simple formula that combines the well-known inverse square distance dependence with two factors that eliminate the divergence of the radial dose integral at both small and large distances. A clear physical interpretation is given to the asymptotic behaviour of the radial dose distribution resulting from these two factors. The proposed formula agrees with the Monte Carlo data within 10% for radial distances of up to 10 m, which corresponds to a dose range covering over eight orders of magnitude. Differences between our results and those of previously published analytical models are discussed.
机译:基于无定形轨道结构近似的模型已成功地预测了重带电粒子的生物效应。这种模型的开发仍然是研究的活跃领域,包括强子疗法的应用。在这种模型中,由δ电子和直接由粒子沉积的剂量的径向分布是轨道结构的主要特征。我们使用Geant4-DNA蒙特卡洛编码计算了10到100 MeV能量范围内的质子的这些分布。通过一个简单的公式可以近似得出这些结果,该公式将众所周知的平方反比关系与两个因素相结合,从而消除了小剂量和大剂量时径向剂量积分的差异。对这两个因素导致的径向剂量分布的渐近行为给出了清晰的物理解释。所提出的公式与长达10 m的径向距离的10%内的蒙特卡洛数据一致,这对应于覆盖八个数量级的剂量范围。讨论了我们的结果与先前发布的分析模型之间的差异。

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