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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Analysis of an internal kinetic model for free and bound tritium.
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Analysis of an internal kinetic model for free and bound tritium.

机译:为自由和内部动力分析模型氚。

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摘要

Internal dosimetry models that currently drive regulatory compliance decisions assume that tritium retention kinetic behavior can be modeled by a single exponential function. This is contrary to the results of a number of modeling techniques, which indicate that while elemental tritium (HT) and tritiated water (HTO) are the most commonly released forms of tritium, organically-bound tritium (OBT) doses can be quite significant. In this paper, a unified two-compartment model of the retention kinetics of HTO and OBT is examined for the purpose of investigating the importance of metabolic routes not considered in the ICRP one- and two-exponent models; namely the transfer of tritium from the HTO compartment to the OBT compartment and vice versa. In particular, the effect of intake ratio is investigated, and a detailed analysis of dosimetric implications is performed. For typical combined intakes of HTO and OBT, the number of disintegrations from the two tritium forms can be roughly equal. This result, when combined with the suggested greater biological effectiveness of OBT, indicates effective doses will be greater than those obtained from a single exponential model. The results of this study corroborate previous findings using the two-compartment model for the cases of HTO-only and or OBT-only intakes and compare well with data taken from studies on animals and human subjects.
机译:内部剂量学模型,当前驱动器法规遵从性假设的决定氚滞留动力学行为可以被建模由一个指数函数。相反一些建模的结果技术,这表明尽管元素氚(HT)和氚化水(HTO)最常见的形式的氚,发布有机结合氚(OBT)剂量很重要的。两舱制保留动力学的模型HTO和OBT检查的目的研究代谢途径的重要性不考虑ICRP - two-exponent之一模型;HTO OBT室和副室。调查,详细分析的剂量测定的影响。总摄入量HTO, OBT的数量氚衰变的两种形式大致相等。建议更大的生物有效性OBT,表明有效剂量将会更大比从一个指数模型。之前发现使用两舱制模型HTO-only和或OBT-only摄入量数据来自研究和比较好动物和人体试验。

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