首页> 外文期刊>Journal of radiological protection: Official journal of the Society for Radiological Protection >Skin dose rate conversion factors after contamination with radiopharmaceuticals: Influence of contamination area, epidermal thickness and percutaneous absorption
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Skin dose rate conversion factors after contamination with radiopharmaceuticals: Influence of contamination area, epidermal thickness and percutaneous absorption

机译:放射性药物污染后的皮肤剂量率转换系数:污染面积,表皮厚度和经皮吸收的影响

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摘要

Skin contamination with radiopharmaceuticals can occur during biomedical research and daily nuclear medicine practice as a result of accidental spills, after contact with bodily fluids of patients or by inattentively touching contaminated materials. Skin dose assessment should be carried out by repeated quantification to map the course of the contamination together with the use of appropriate skin dose rate conversion factors. Contamination is generally characterised by local spots on the palmar surface of the hand and complete decontamination is difficult as a result of percutaneous absorption. This specific issue requires special consideration as to the skin dose rate conversion factors as a measure for the absorbed dose rate to the basal layer of the epidermis. In this work we used Monte Carlo simulations to study the influence of the contamination area, the epidermal thickness and the percutaneous absorption on the absorbed skin dose rate conversion factors for a set of 39 medical radionuclides. The results show that the absorbed dose to the basal layer of the epidermis can differ by up to two orders of magnitude from the operational quantity H_p(0.07) when using an appropriate epidermal thickness in combination with the effect of percutaneous absorption.
机译:在生物医学研究和日常核医学实践期间,由于意外溢出,与患者体液接触后或因疏忽接触受污染的材料而导致皮肤受到放射性药物污染。应当通过重复定量进行皮肤剂量评估,以绘制出污染的过程,并使用适当的皮​​肤剂量率转换因子。污染的特征通常是手掌表面上的局部斑点,由于经皮吸收,很难完全清除污染。这个特定问题需要特别考虑皮肤剂量率转换因子,作为对表皮基底层吸收剂量率的度量。在这项工作中,我们使用蒙特卡洛模拟研究了39种医用放射性核素的污染面积,表皮厚度和经皮吸收对吸收的皮肤剂量率转换因子的影响。结果表明,当使用适当的表皮厚度并结合经皮吸收作用时,表皮基底层的吸收剂量与操作量H_p(0.07)的差异最多可达到两个数量级。

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