Harrison J D
a Centre for Radiation, Chemical and Environmental Hazards, Public Health England, Chilton, Didcot, Oxon OX11 0RQ, UK.
b Oxford Brookes University, UK.
Ann ICRP. 2018 Oct;47(3-4):9-19. doi: 10.1177/0146645318756223. Epub 2018 Apr 13.
The practical implementation of the International Commission on Radiological Protection's (ICRP) system of radiological protection requires the availability of appropriate methodology and data. Over many years, ICRP Committee 2 has provided sets of dose coefficients to allow users to evaluate equivalent and effective doses for radiation exposures of workers and members of the public. The methodology being applied in the calculation of doses is state-of-the-art in terms of the biokinetic models used to describe the behaviour of inhaled and ingested radionuclides, and the dosimetric models used to model radiation transport for external and internal exposures. This overview provides an outline of recent work and future plans, including publications on dose coefficients for adults, children, and in-utero exposures, with new dosimetric phantoms in each case. For the first time, ICRP will publish dose coefficients for intakes of radon isotopes calculated using dosimetric models. Committee 2 is also working with Committee 3 on dose coefficients for radiopharmaceuticals, and leading a cross-committee initiative to provide advice on the use of effective dose. The remit of Committee 2 has now been widened to include all data requirements for the assessment of doses to humans and non-human biota.
国际放射防护委员会(ICRP)放射防护体系的实际实施需要合适的方法和数据。多年来,ICRP第2委员会提供了一系列剂量系数,以便用户评估工作人员和公众辐射照射的当量剂量和有效剂量。在用于描述吸入和摄入放射性核素行为的生物动力学模型以及用于模拟外照射和内照射辐射传输的剂量学模型方面,剂量计算所采用的方法是最先进的。本综述概述了近期工作和未来计划,包括关于成人、儿童和宫内照射剂量系数的出版物,每种情况均采用了新的剂量学体模。ICRP将首次发布使用剂量学模型计算的氡同位素摄入量的剂量系数。第2委员会还在与第3委员会合作制定放射性药物的剂量系数,并牵头开展一项跨委员会倡议,就有效剂量的使用提供建议。第2委员会的职责范围现已扩大,包括评估人类和非人类生物群剂量所需的所有数据要求。