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Towards a standardization of biological dosimetry by cytogenetics.

机译:通过细胞遗传学实现生物剂量学的标准化。

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When individuals are accidentally overexposed to ionising radiations, follow-up investigations may include dose assessment by cytogenetics. Scoring of unstable chromosome aberrations (dicentrics, centric rings and acentrics) in peripheral blood lymphocytes is regarded as the most specific method to estimate the exposure dose. It has acquired, in some countries, a medico-legal recognition. Paradoxically, there is no universally adopted technique and so important variations occur in methods and these may influence the quality of results. The only published documents supplying some standardization background are International Atomic Energy Agency (IAEA) Technical Reports No 260 (1986) and 405 (2001). Even they do not address crucial areas such as the organization of service laboratories and the need for quality assurance programmes. The significant role of biological dosimetry in many countries has proved the need for a standardized technique that is compatible with national radiological protection programmes. Thus, an International Standards Organization working group for the standardization of biological dosimetry by cytogenetics was created. This group comprises 13 scientists from 11 countries plus an IAEA representative. On the basis of a group consensus, a text defining minimal constraints on all the steps of the process was proposed. A working draft was submitted to ISO in 2001 and its structure is presented here.
机译:当个人意外暴露于电离辐射下时,后续研究可能包括通过细胞遗传学进行剂量评估。外周血淋巴细胞中不稳定染色体畸变(双着丝粒,中心环和无着丝粒)的评分被认为是估算暴露剂量的最具体方法。在某些国家,它获得了法律上的承认。矛盾的是,目前尚无普遍采用的技术,因此方法中会发生重要变化,这些变化可能会影响结果的质量。提供某些标准化背景的唯一公开文件是国际原子能机构(IAEA)的第260(1986)号和第405(2001)号技术报告。甚至它们也没有解决关键领域,例如服务实验室的组织和质量保证计划的需求。在许多国家,生物剂量学的重要作用证明了需要一种与国家放射防护计划兼容的标准化技术。因此,成立了一个国际标准组织工作组,负责通过细胞遗传学对生物剂量学进行标准化。该小组由来自11个国家的13位科学家和一位国际原子能机构代表组成。在小组共识的基础上,提出了一个文本,该文本定义了该流程所有步骤的最小约束。工作草案已于2001年提交给ISO,其结构在此处介绍。

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