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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Reflections on Basic Science Studies Involving Low Doses of Ionizing Radiation.
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Reflections on Basic Science Studies Involving Low Doses of Ionizing Radiation.

机译:反思基础科学研究涉及低剂量的电离辐射。

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Investigation of health effects of low doses of radiation as a field of study has been riddled with difficulties since its inception. In this document we will use 100 mGy as the cutoff upper limit for low-dose radiation, borrowing this definition from the U.S. Department of Energy, although other agencies and researchers sometimes include up to five-fold higher doses under the same title. Difficulties in this area of research are most often ascribed to the fact that effects of low doses of radiation are subtle and difficult to distinguish from the plethora of other low-grade stresses. Thus, for example, most epidemiological studies include hundreds of thousands of samples and generate risk estimates that are statistically meaningful only when they are considered on a scale of hundreds or thousands of people. A logical approach to remedy the situation for low-dose research was to conduct well-controlled animal studies with hundreds of animals; nevertheless, even after many such studies were completed, our understanding of the biological basis for risk from low-dose radiation exposure is still not conclusive. In this paper we argue that the problem lies in the fact that our approach to animal studies is not comprehensive but conceptually binary. While some researchers apply epidemiological models to animal data, others look into molecular and cellular biology only. Very few studies are conducted to bridge this gap and consider how a realistic model of DNA damage could be integrated into a realistic model of radiation carcinogenesis.
机译:低剂量的对健康的影响的调查辐射的研究领域已经随处可见自成立以来与困难。文件我们将使用100 mGy截止上限制低剂量辐射,借贷从美国能源部的定义,虽然有时其他机构和研究人员包括多达5倍高剂量下相同的标题。通常归因于这样一个事实:影响低剂量的辐射是微妙和难以区分的过多其他低级的压力。流行病学研究包括数百名成千上万的样品并生成风险估计统计学上有意义的只有当他们被认为是数百或规模成千上万的人。低剂量研究的情况行为控制动物研究数以百计的动物;许多这样的研究完成后,我们的理解风险的生物学基础从低剂量辐射还没有确凿。问题在于,我们的方法动物研究是不全面的概念上的二进制。流行病学模型动物数据,别人只考虑分子和细胞生物学。很少有研究进行填补这一缺口并考虑如何一个现实的DNA损伤的模型可以集成到一个现实的模型吗辐射致癌作用。

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