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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Development of in vivo tooth EPR for individual radiation dose estimation and screening.
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Development of in vivo tooth EPR for individual radiation dose estimation and screening.

机译:体内牙EPR对个人的发展辐射剂量评估和筛选。

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摘要

The development of in vivo EPR has made it feasible to perform tooth dosimetry measurements in situ, greatly expanding the potential for using this approach for immediate screening after radiation exposures. The ability of in vivo tooth dosimetry to provide estimates of absorbed dose has been established through a series of experiments using unirradiated volunteers with specifically irradiated molar teeth placed in situ within gaps in their dentition and in natural canine teeth of patients who have completed courses of radiation therapy for head and neck cancers. Multiple measurements in patients who have received radiation therapy demonstrate the expected heterogeneous dose distributions. Dose-response curves have been generated using both populations and, using the current methodology and instrument, the standard error of prediction based on single 4.5-min measurements is approximately 1.5 Gy for inserted molar teeth and between 2.0 and 2.5 Gy in the more irregularly shaped canine teeth. Averaging of independent measurements can reduce this error significantly to values near 1 Gy. Developments to reduce these errors are underway, focusing on geometric optimization of the resonators, detector positioning techniques, and optimal data averaging approaches. In summary, it seems plausible that the EPR dosimetry techniques will have an important role in retrospective dosimetry for exposures involving large numbers of individuals.
机译:体内EPR使它的发展可行的执行牙剂量测定法测量原位,大大扩大的潜力使用这种方法后立即检查辐射暴露。剂量测定法提供吸收剂量的估算建立了通过一系列的吗实验用unirradiated志愿者特别是辐照磨牙放在现场内的生齿和差距患者的自然犬齿完成课程的放射治疗和颈部癌症。病人接受放射治疗说明预期的异构剂量分布。使用人群和生成,使用当前的方法和仪器,标准错误的预测基于单4.5分钟尺寸大约是1.5 Gy插入磨牙和2.0和2.5 Gy之间形状不规则的犬齿。独立的测量可以减少这种错误显著值接近1 Gy。为了减少这些错误正在进行中,关注谐振器的几何优化,探测器定位技术,并优化数据平均的方法。似是而非的EPR剂量学技术在回顾性剂量测定法有一个重要的角色吗对涉及大量的曝光个人。

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