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首页> 外文期刊>Physics in medicine and biology. >Influence of multiple scattering and energy loss straggling on the absorbed dose distributions of therapeutic light ion beams: I. Analytical pencil beam model
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Influence of multiple scattering and energy loss straggling on the absorbed dose distributions of therapeutic light ion beams: I. Analytical pencil beam model

机译:多次散射和能量散失对治疗性离子束吸收剂量分布的影响:I.笔形分析束模型

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摘要

The lateral and longitudinal distributions of absorbed dose of broad and narrow light ion beams in water are investigated. An analytical algorithm based on the generalized Fermi–Eyges theory is developed and used to calculate the effects of multiple scattering and range straggling on the dose distribution of light ion beams in water. A first-order Gaussian multiple scattering and energy loss straggling approach is generally sufficiently accurate for describing the lateral and longitudinal spread of the Bragg peak and the associated energy deposition distribution of therapeutic light ion beams at ranges of clinical interest. Nuclear reactions are not taken into account in this study. The analytical algorithm given in the present study allows an accurate description of the radial spread and the range straggling of light ions traversing matter. A verification of this approach by comparing with experimental data, Monte Carlo methods and other analytical techniques will be presented in a forthcoming paper.
机译:研究了宽和窄光离子束在水中吸收剂量的横向和纵向分布。提出了一种基于广义费米-艾格斯(Fermi-Eyges)理论的分析算法,该算法用于计算多次散射和距离散乱对水中轻离子束剂量分布的影响。一阶高斯多重散射和能量损失散失方法通常足够准确,以描述布拉格峰的横向和纵向展宽以及在临床关注范围内的治疗性离子束的相关能量沉积分布。这项研究未考虑核反应。在本研究中给出的分析算法可以精确描述径向离子的扩散以及轻离子穿越物质的距离散布。在即将发表的论文中,将通过与实验数据,蒙特卡洛方法和其他分析技术进行比较来验证这种方法。

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