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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Development of a New Chelation Model: Bioassay Data Interpretation and Dose Assessment after Plutonium Intake via Wound and Treatment with DTPA
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Development of a New Chelation Model: Bioassay Data Interpretation and Dose Assessment after Plutonium Intake via Wound and Treatment with DTPA

机译:发展一个新的螯合模型:生物测定数据解释和剂量评估钚摄入量通过伤口和治疗二乙三胺五醋酸

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摘要

The administration of chelation therapy to treat significant intakes of actinides, such as plutonium, affects the actinide's normal biokinetics. In particular, it enhances the actinide's rate of excretion, such that the standard biokinetic models cannot be applied directly to the chelation-affected bioassay data in order to estimate the intake and assess the radiation dose. The present study proposes a new chelation model that can be applied to the chelation-affected bioassay data after plutonium intake via wound and treatment with DTPA. In the proposed model, chelation is assumed to occur in the blood, liver, and parts of the skeleton. Ten datasets, consisting of measurements of C-14-DTPA, Pu-238, and Pu-239 involving humans given radiolabeled DTPA and humans occupationally exposed to plutonium via wound and treated with chelation therapy, were used for model development. The combined dataset consisted of daily and cumulative excretion (urine and feces), wound counts, measurements of excised tissue, blood, and post-mortem tissue analyses of liver and skeleton. The combined data were simultaneously fit using the chelation model linked with a plutonium systemic model, which was linked to an ad hoc wound model. The proposed chelation model was used for dose assessment of the wound cases used in this study.
机译:螯合疗法来治疗重要的锕系元素的摄入量,如钚,影响锕系元素的正常生物运动学。锕系元素的排泄速度,这样标准biokinetic模型无法应用直接chelation-affected生物测定数据为了估计摄入和评估辐射剂量。螯合模型可以应用到钚后chelation-affected生物测定数据摄入与二乙三胺五醋酸通过伤口和治疗。提出模型,假定发生在螯合血液、肝脏和骨骼。测量的数据集,包括C-14-DTPA、pu - 238和pu - 239,包括人类由于放射性标记的二乙三胺五醋酸和人类职业方面暴露于钚通过伤口和处理螯合疗法,被用于模型发展。每天和累积排泄(尿液和粪便),伤口,切除组织的测量,肝血,死后组织分析和骨架。同时配合使用螯合模型与钚系统模型与一个特别的伤口模型。螯合用于剂量的评估模型在这项研究中使用的伤口情况下。

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