[Radiotoxicology]。

J L Poncy, P Fritsch, R Masse
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引用次数: 0

摘要

放射毒理学是一门旨在评估放射性核素内污染后对工作人员和一般人群所引起的辐射生物效应,并对其健康风险进行评价的科学。内部污染后,对放射性化合物的生物动力学分析可以了解它们在体内的行为。这些复杂的过程描述了放射性核素的摄入、直接血液摄取或从沉积区、尿液和粪便排泄物中将可溶性形式转移到血液中的途径,以及放射性核素在不同目标器官中的分布和保留。对这些过程进行建模以建立数学计算。获得的数据对于解释以贝克勒尔(Bq: transform .s-1)表示的初始活性沉积的生物测定测量和以希弗(Sv)表示的持续有效剂量计算具有重要意义。这一承诺有效剂量对应于以灰色表示的吸收剂量(Gy),并由与辐射质量有关的辐射加权因子和代表靶器官对全身均匀照射引起的效应所造成的总损害的组织加权因子加权。这一承诺有效剂量是风险评估的一个特定参数,它使放射毒理学成为毒理学的一个特殊部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Radiotoxicology].

Radiotoxicology is a science aiming firstly to estimate the biological effects induced by radiation in workers and general population after internal contamination of radionuclides, secondly evaluate the risk on health. After internal contamination, the analysis of biokinetics of radioactive compounds allow to understand their behaviour in the body. Those complex processes describe routes of radionuclide intake, direct blood uptake or transfer of soluble form to blood from deposit area, urine and fecal excretions, distribution and retention of radionuclides in different target organs. These processes are modelled to establish mathematical calculations. Data obtained are important to the interpretation of bioassay measurement for initial activity deposit expressed in becquerel (Bq: transformation.s-1) and committed effective dose calculation, expressed in sievert (Sv). This committed effective dose corresponds to the absorbed dose expressed in gray (Gy), weighted by a radiation weighting factor related to the quality of radiation and a tissue weighting factor which represents the contribution of the target organ to the total detriment due to effects induced by uniform irradiation of the whole body. This committed effective dose is a specific parameter for risk assessment which characterizes the radiotoxicology as a special part of toxicology.

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