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首页> 外文期刊>Medical Physics >Radiobiological significance of beamline dependent proton energy distributions in a spread-out Bragg peak.
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Radiobiological significance of beamline dependent proton energy distributions in a spread-out Bragg peak.

机译:散布的布拉格峰中取决于束线的质子能量分布的放射生物学意义。

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摘要

Similar target doses can be achieved with different mixed radiation fields, i.e., particle energy distributions, produced by a practical proton beam and a range modulator. The dose delivered in particle therapy can be described as the integral of fluence times the total mass stopping power over the particle energy distributions. We employed Monte Carlo simulations to explore the influence on the relative biological effectiveness (RBE) of the energy and the energy spread of the proton beam incident on a range modulator system. Using different beams, the conditions of beam delivery were adjusted so that similar spread out Bragg peak (SOBP) doses were delivered to a simulated water phantom. We calculated the RBE for inactivation of three different cell lines using the track structure model. The RBE depends on the details of the dose deposition and the biological characteristics of the irradiated tissue. Our calculations show that, for differing beam conditions, the corresponding differences in the total mass stopping power distributions are reflected in differences in the RBE. However, these differences are remarkable only at the very distal edge of the SOBP, for low doses, and/or for large differences in beam setup.
机译:用实际的质子束和测距调制器产生的不同的混合辐射场,即粒子能量分布,可以达到相似的目标剂量。粒子治疗中传递的剂量可以描述为注量乘以粒子能量分布上的总质量阻止功率的积分。我们使用蒙特卡洛模拟来探索对能量的相对生物有效性(RBE)的影响以及质子束入射到距离调制器系统上的能量散布。使用不同的光束,调节光束的传输条件,以便将类似的展开式布拉格峰(SOBP)剂量传输到模拟的水模型。我们使用轨道结构模型计算了三种不同细胞系失活的RBE。 RBE取决于剂量沉积的细节和被照射组织的生物学特性。我们的计算表明,对于不同的射束条件,总质量停止功率分布的相应差异反映在RBE中。但是,这些差异仅在SOBP的最远端处显着,对于低剂量和/或对于光束设置而言,差异很大。

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