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首页> 外文期刊>Physics in medicine and biology. >A method to convert spectra from slab microdosimeters in therapeutic ion-beams to the spectra referring to microdosimeters of different shapes and material
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A method to convert spectra from slab microdosimeters in therapeutic ion-beams to the spectra referring to microdosimeters of different shapes and material

机译:一种方法将治疗离子束中的平板微倍数计转换为不同形状和材料微量仪的光谱

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摘要

Experimental studies of microdosimetry in therapeutic ion beams have been performed using several detectors. The differences among the microdosimeters lie on the shapes, the site sizes, and the material. The present study proposes a method to extract from the heterogeneous information collected with the different microdosimeters a univocal specification of the radiation quality of the radiation field. Historically the specification of the radiation quality is provided either in terms of linear energy transfer (LET) or in terms of lineal energy, y. The first part of this study focuses on identifying the correlation between the distributions of LET and the lineal energy spectra as well as the correspondence between their mean values calculated from the frequency and dose distributions. The evaluation is inspired by the method of LET analysis described by Kellerer (1972 Phys. Med. Biol. 17 232-40) with adaptation to the peculiarities of ion-beam therapy where the pristine irradiation is unidirectional and made of a single species of essentially mono-energetic ions. The second objective of this study is to interpret the spectra collected by a slab and perform the necessary conversion to estimate what the spectrum would be if it was collected by a detector different in shape, material, or size. An example is provided using as starting point the simulated lineal energy spectrum of carbon ions impinging a slab detector of graphite and applying the method to convert it to the spectra that would be obtained in the same radiation field with spherical, cylindrical, and slab detectors made of water.
机译:使用多个探测器进行了治疗离子束中微量吡咯的实验研究。微量镜之间的差异位于形状,位点尺寸和材料上。本研究提出了一种从采用不同微量仪收集的异构信息中提取的方法,该方法是辐射场的辐射质量的单一规格的非均匀信息。从历史上看,辐射质量的规范是在线性能量转移(假设)或线性能量方面提供的。本研究的第一部分侧重于识别Let和Lineal能谱之间的相关性以及由频率和剂量分布计算的平均值之间的对应关系。评价是通过Kellerer描述LET分析的方法与适应离子束疗法,其中原始照射是单向的特殊性启发(1972米的PHY。医学生物学杂志17 232-40)而制成的基本上由单一种类的单能级离子。本研究的第二个目的是解释由板坯收集的光谱,并执行必要的转换以估计频谱是由形状,材料或尺寸不同的检测器收集的。使用作为弹性板状板的板离子的碳离子的模拟线性能谱和施加该方法将其转换为在与球形,圆柱形和板式探测器中的相同辐射场中获得的光谱转换为光谱的碳离子的模拟线性能谱。水。

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