论文标题

建模质子治疗梁微测定法的新方法

A New Approach to Modeling the Microdosimetry of Proton Therapy Beams

论文作者

Abolfath, Ramin, Helo, Yusuf, Carlson, David J., Stewart, Robert, Grosshans, David, Mohan, Radhe

论文摘要

{\ bf介绍}:重新审视微量测定中平均和弦长度的表述,并用适合无线电模型模型的粒子平均自由路径代替。 {\ bf方法}:我们按事件进行碰撞,按事件进行造成的geant4蒙特卡洛仿真,并计算双重划分的垫脚长度,$ \ langle \ langle \ langle l \ rangle \ rangle \ rangle \ rangle $,用于从mm down down down to $ mm $ m $ m $ m $ m $ m $ m $ m $ m $ m $ m $ m $ m $ m $ m $ m $ m $。我们考虑$ \ langle \ langle l \ rangle \ rangle $来表示粒子平均自由路径。 {\ bf结果}:我们表明,$ \ langle \ langle l \ rangle \ rangle $连续下降,这是深度的函数,渐近地饱和到低能中的最小值,在低能量中,它表现出独立于粒子射流束能量的通用缩放行为。我们将$ \ langle \ langle l \ rangle \ rangle $与DNA损伤的线性密度,初始致死性病变的复杂性,并说明了使用平均和弦长度与所提出的平均自由路径的模型计算中预测性RBE之间的相对差异。我们证明了RBE在Bragg峰内外的快速增加与$ \ langle \ langle l \ rangle \ rangle $之间的一致性,这是深度的降低功能。 {\ bf讨论和结论}:在纳米米量表中赋予能量的位置之间的相互作用与随后的理化过程,DNA损伤中的因果关系和途径,需要用Proton的无用路径和电荷粒子的平均值来代替平均距离核对次数的距离,将细胞核的几何弦长替代。

{\bf Introduction}: To revisit the formulation of the mean chord length in microdosimetry and replace it by the particle mean free path appropriate for modelings in radio-biology. {\bf Methods}: We perform a collision-by-collision following by event-by-event Geant4 Monte Carlo simulation and calculate double-averaged stepping-length, $\langle\langle l \rangle\rangle$, for a range of target sizes from mm down to $μ$m and depth in water. We consider $\langle\langle l \rangle\rangle$ to represent the particle mean free path. {\bf Results}: We show that $\langle\langle l \rangle\rangle$ continuously drops as a function of depth and asymptotically saturates to a minimum value in low energies, where it exhibits a universal scaling behavior, independent of particle nominal beam energy. We correlate $\langle\langle l \rangle\rangle$ to linear density of DNA damage, complexities of initial lethal lesions and illustrate a relative difference between predictive RBEs in model calculations using mean chord length vs. the proposed mean free path. We demonstrate consistency between rapid increase in RBE within and beyond the Bragg peak and $\langle\langle l \rangle\rangle$, a decreasing function of depth. {\bf Discussion and conclusion}: An interplay between localities in imparted energy at nano-meter scale and subsequent physio-chemical processes, causalities and pathways in DNA damage requires substitution of geometrical chord length of cell nuclei by mean-free path of proton and charged particles to account for a mean distance among sequential collisions in DNA materials.

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