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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Radiation dose-response curves: cell repair mechanisms vs. ion track overlapping
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Radiation dose-response curves: cell repair mechanisms vs. ion track overlapping

机译:辐射剂量 - 响应曲线:细胞修复机制与离子轨道重叠

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摘要

Chromosome aberrations in human lymphocytes exposed to different doses of particle radiation: 150 MeV and spread out Bragg peak proton beams, 22 MeV/u boron beam and 199 V/u carbon beam were studied. For comparison, an experiment with Co-60 7-rays was also performed. We investigated distributions of aberration frequency and the shape of dose response curves for the total aberration yield as well as for exchange and non-exchange aberrations, separately. Applying the linear-quadratic model, we could derive a relation between the fitted parameters and the ion track radius which could explain experimentally observed curvature of the dose response curves. The results compared with physical expectations clearly show that the biological effects of cell repair are much more important than the ion track overlapping.
机译:暴露于不同剂量的颗粒辐射的人淋巴细胞中的染色体畸变:150mev并扩散出布拉格峰质子束,研究了22mev / u硼束和199V / u碳束。 为了比较,还进行了具有CO-60 7射线的实验。 我们研究了差距频率和剂量响应曲线的分布,用于总像差产量以及交换和非交换像差。 应用线性二次模型,我们可以导出拟合参数和离子轨道半径之间的关系,其可以解释试验观察到的剂量响应曲线的曲率。 结果与物理期望相比清楚地表明,细胞修复的生物学效应远比离子轨道重叠更重要。

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