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Biological effectiveness of (12)C and (20)Ne ions with very high LET.

机译:LET很高的(12)C和(20)Ne离子的生物有效性。

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摘要

PURPOSE: To determine the relationship between the relative biological effectiveness (RBE) for cell inactivation and linear energy transfer (LET) in the Bragg peak region of (12)C and (20)Ne ions. MATERIALS AND METHODS: Chinese hamster ovary (CHO-K1) cells were exposed to high LET (12)C (33.2 MeV, 20.3 MeV, 9.1 MeV at cell entrance) and (20)Ne ions (56.2 MeV, 34.7 MeV, 15 MeV at cell entrance) and to low LET x-rays. Technical details of the irradiation facility are presented which is based on the Monte Carlo simulation of the lateral spread of heavy ions as a result of the multiscattering small-angle process in physical conditions of the experimental set-up. RESULTS: RBE has been measured for LET values close to the Bragg peak maximum, i.e., 440-830 keV/microm for (12)C and for 1020-1600 keV/microm for (20)Ne ions. RBE values at several levels of survival were estimated and were found to decrease with increasing LET. The inactivation cross sections were calculated from the final slope of dose-response curves and were found to increase with increasing LET. CONCLUSIONS: The RBE decreases with increasing LET in the range between 440 and 1600 keV/microm for the two types of radiations forming a single line when plotted together, pointing towards LET as the single determinant of RBE. The inactivation cross section describing the killing efficiency of a single particle at the end of particle range comes close to the size of the cell nucleus.
机译:目的:确定细胞失活的相对生物学有效性(RBE)与(12)C和(20)Ne离子的布拉格峰区域中的线性能量转移(LET)之间的关系。材料与方法:中国仓鼠卵巢(CHO-K1)细胞暴露于高LET(12)C(33.2 MeV,20.3 MeV,9.1 MeV在细胞入口处)和(20)Ne离子(56.2 MeV,34.7 MeV,15 MeV)在细胞入口处)和低LET X射线。给出了辐照设备的技术细节,该技术细节是基于重离子横向扩散的蒙特卡罗模拟,该重离子是在实验装置的物理条件下进行多散射小角度过程的结果。结果:已测量LET值接近Bragg峰值最大值的RBE,即对于(12)C为440-830 keV /μm,对于(20)Ne离子为1020-1600 keV /μm。估计了几种存活水平的RBE值,发现其随着LET的增加而降低。从剂量反应曲线的最终斜率计算出失活截面,发现其随着LET的增加而增加。结论:当绘制在一起时,形成单条线的两种类型的辐射在440 keV /微米至1600 keV /微米的范围内,RBE随着LET的增加而降低,并指向LET作为RBE的唯一决定因素。描述颗粒范围末端单个颗粒的杀灭效率的灭活截面接近于细胞核的大小。

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