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首页> 外文期刊>Australasian physical & engineering sciences in medicine >Relative biological effectiveness in a proton spread-out Bragg peak formed by pencil beam scanning mode
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Relative biological effectiveness in a proton spread-out Bragg peak formed by pencil beam scanning mode

机译:铅笔束扫描模式形成的质子扩散布拉格峰中的相对生物有效性

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摘要

In recent years, there is an increased interest in using scanning modes in proton therapy, due to the more conformal dose distributions, thanks to the spot-weighted dose delivery. The dose rate in each spot is however much higher than the dose rate when using passive irradiation modes, which could affect the cell response. The purpose of this work was to investigate how the relative biological effectiveness changes along the spread-out Bragg peak created by protons delivered by the pencil beam scanning mode. Cell survival and micronuclei formation were investigated in four positions along the spread-out Bragg peak for various doses. Monte Carlo simulations were used to estimate the dose-averaged linear energy transfer values in the irradiation positions. The cell survival was found to decrease the deeper the sample was placed in the spread-out Bragg peak, which corresponds to the higher linear energy transfer values found using Monte Carlo simulations. The micronuclei frequencies indicate more complex cell injuries at that distal position compared to the proximal part of the spread-out Bragg peak. The relative biological effectiveness determined in this study varies significantly and systematically from 1.1, which is recommended value by the International Commission on Radiation Units, in all the studied positions. In the distal position of spread-out Bragg peak the relative biological effectiveness values were found to be 2.05 +/- 0.44, 1.85 +/- 0.42, 1.53 +/- 0.38 for survival levels 90, 50 and 10%, respectively.
机译:近年来,由于点加权剂量输送,由于保形的剂量分布更加均匀,因此在质子治疗中使用扫描模式引起了越来越多的兴趣。但是,每个点的剂量率远高于使用被动照射模式时的剂量率,这可能会影响细胞反应。这项工作的目的是研究沿笔形束扫描模式传递的质子所产生的展开布拉格峰,相对生物学有效性如何变化。在不同剂量下,沿着展开的布拉格峰在四个位置研究了细胞存活率和微核形成。使用蒙特卡洛模拟来估计照射位置的剂量平均线性能量转移值。发现将细胞放置在展开的布拉格峰中越深,细胞存活率就会降低,这与使用蒙特卡洛模拟法发现的较高的线性能量转移值相对应。与散布的布拉格峰的近端部分相比,微核频率表明在该远端位置更复杂的细胞损伤。在本研究中确定的相对生物学有效性与所有研究位置的国际辐射单位委员会推荐值1.1相比有很大的系统性差异。在散布的布拉格峰的远侧位置,相对于90%,50%和10%的存活率,相对生物学有效性值分别为2.05 +/- 0.44、1.85 +/- 0.42、1.53 +/- 0.38。

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