首页> 外文期刊>British Journal of Radiology >The apparent increase in the {beta}-parameter of the linear quadratic model with increased linear energy transfer during fast neutron irradiation.
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The apparent increase in the {beta}-parameter of the linear quadratic model with increased linear energy transfer during fast neutron irradiation.

机译:在快速中子辐照期间,线性二次模型的β参数随线性能量传递的增加而明显增加。

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The issue of whether the beta-parameter of the linear quadratic model changes with linear energy transfer (LET) remains controversial. Retrospective analysis of UK fast neutron experimental data using human cell lines at Clatterbridge shows that the beta-parameter of the linear quadratic model probably does increase with LET during neutron irradiation. For cells without a deficiency in DNA damage repair and for experiments in which beta-parameter estimates were considered to be unreliably low, a provisional relationship of beta(H) = 1.82 beta(L) was found (where the suffixes refer to high and low LET exposures, respectively). This implies that radicalbeta increases by around 1.35 in the specific case of 62.5 MeV neutrons relative to 4 MeV X-rays. Increments in the beta-parameter with LET influence the relative biological effect (RBE), especially at high doses per fraction. Large fractions are being used in experimental carbon ion therapy, in which broadly similar RBE values to fast neutrons are found. These interesting findings after fast neutron exposure need to be studied further for applications in charged particle beam therapy using light ions, which is presently undergoing a worldwide expansion.
机译:线性二次模型的β参数是否随线性能量转移(LET)发生变化的问题仍然存在争议。使用Clatterbridge上的人类细胞系对UK快速中子实验数据进行的回顾性分析表明,线性二次模型的β参数可能在中子辐照期间随LET的增加而增加。对于DNA损伤修复没有缺陷的细胞以及认为β参数估计值不可靠的实验,发现了beta(H)= 1.82 beta(L)的临时关系(后缀指的是高和低分别进行LET曝光)。这意味着在62.5 MeV中子相对于4 MeV X射线的特定情况下,自由基beta大约增加1.35。 LET的β参数的增加会影响相对生物学效应(RBE),尤其是在每部分高剂量时。很大一部分用于实验性碳离子疗法,在其中发现了与快中子大致相似的RBE值。快速中子暴露后,这些有趣的发现需要进一步研究,以用于使用轻离子的带电粒子束治疗中,目前正在世界范围内扩展。

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