首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Energy dependence of dose and dose-rate effectiveness factor for low-let radiations: potential importance to estimation of cancer risks and relationship to biological effectiveness.
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Energy dependence of dose and dose-rate effectiveness factor for low-let radiations: potential importance to estimation of cancer risks and relationship to biological effectiveness.

机译:低辐射剂量的能量依赖性和剂量率有效性因子:对估计癌症风险以及与生物学有效性的关系的潜在重要性。

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摘要

A dose and dose-rate effectiveness factor (DDREF) for low-linear energy transfer (LET) radiations (photons and electrons) is used in cancer risk assessments to represent an assumption that risks at low doses and low dose rates may be less than estimates that are based mainly on linear extrapolations of observed risks at higher acute doses. DDREF generally is assumed to be independent of energy. However, a variety of radiobiological data reviewed in this paper suggest that DDREF may decrease with decreasing energy. This effect, which parallels increases in biological effectiveness with decreasing energy of photons and electrons that have been observed in many radiobiological studies, has received little attention. The importance of an overestimation of DDREF at low energies of photons and electrons is that cancer risks at low doses and low dose rates could be underestimated. This paper also discusses (1) the link between DDREF and the usual assumption of a linear-quadratic dose-response relationship forlow-LET radiations and (2) concerns about the validity of estimates of DDREF and biological effectiveness used in cancer risk assessments that are raised by results of recent studies that cast doubt on whether the underlying radiobiological data can be represented by a simple linear-quadratic model.
机译:用于低线性能量转移(LET)辐射(光子和电子)的剂量和剂量率有效因子(DDREF)用于癌症风险评估,以表示一个假设,即低剂量和低剂量率的风险可能小于估计值这主要是基于较高急性剂量下观察到的风险的线性外推。通常假定DDREF与能量无关。但是,本文审查的各种放射生物学数据表明,DDREF可能随着能量的降低而降低。在许多放射生物学研究中观察到的这种效应与生物有效性的提高与光子和电子能量的降低相提并论。在低能量的光子和电子下高估DDREF的重要性在于,低剂量和低剂量率的癌症风险可能被低估。本文还讨论了(1)DDREF与低LET辐射的线性二次剂量反应关系的通常假设之间的联系,以及(2)有关DDREF估计的有效性以及用于癌症风险评估的生物学有效性的担忧最近的研究结果引起了人们的质疑,这些研究使人们怀疑潜在的放射生物学数据是否可以通过简单的线性二次模型来表示。

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