两种商用热释光剂量计(tld)对不同参数的响应评价。

BJR open Pub Date : 2023-01-01 DOI:10.1259/bjro.20220035
Sitah Fahad Alanazi, Haya Alarifi, Abdullah Alshehri, Mansour Almurayshid
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引用次数: 0

摘要

目的:研究个人剂量计的剂量学性能和可靠性。本研究考察并比较了两种商用热释光剂量计(TLD-100)和MTS-N的反应。方法:采用IEC 61066标准,比较了两个tld的能量依赖性、线性度、均匀性、再现性、光敏度(零点)、角度依赖性和温度效应等参数。结果:所获得的结果表明,两种TLD材料都表现出线性行为,这表明了拟合质量。此外,两个探测器的角依赖性结果表明,所有剂量响应都在可接受的范围内。然而,TLD-100在所有探测器的光敏重现性方面优于MTS-N,而MTS-N在每个探测器的光敏重现性方面优于TLD-100,这表明TLD-100比MTS-N具有更高的稳定性。MTS-N的批次均匀性(10.84%)优于TLD-100(13.65%)。温度对信号损耗的影响在较高温度65℃时更为明显,但在±30%以下。结论:用剂量当量来测定所有检测器组合的剂量学性质的总体结果是令人满意的。MTS-N卡在能量依赖性、角度依赖性、批次均匀性和信号衰落方面具有较好的效果,而TLD-100卡对光的敏感度较低,可重复性更好。知识的进步:虽然以前的研究显示了几种顶级域名之间的比较,但它们使用了有限的参数和不同的数据分析。本研究结合TLD-100和MTS-N卡进行了更全面的表征方法和检验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Response evaluation of two commercial thermoluminescence dosimeters (TLDs) against different parameters.

Response evaluation of two commercial thermoluminescence dosimeters (TLDs) against different parameters.

Response evaluation of two commercial thermoluminescence dosimeters (TLDs) against different parameters.

Response evaluation of two commercial thermoluminescence dosimeters (TLDs) against different parameters.

Objectives: It is essential to study the dosimetric performance and reliability of personal dosimeters. This study examines and compares the responses of two commercial thermoluminescence dosimeters (TLDs), the TLD-100 and the MTS-N.

Methods: We compared the two TLDs to various parameters such as energy dependence, linearity, homogeneity, reproducibility, light sensitivity (zero point), angular dependence, and temperature effects using the IEC 61066 standard.

Results: The results acquired showed that both TLD materials show linear behavior as indicated by the quality of the fit. In addition, the angular dependence results for both detectors show that all dose responses are within the range of acceptable values. However, the TLD-100 outperformed the MTS-N in terms of light sensitivity reproducibility for all detectors together, while the MTS-N outperforms the TLD-100 for each detector independently and that showed TLD-100 has more stability than MTS-N. The MTS-N shows better batch homogeneity (10.84%) than TLD-100 (13.65%). The effect of temperature in signal loss was clearer at higher temperature 65°C and it was however below ±30%.

Conclusions: The overall results for dosimetric properties determined in terms of dose equivalents for all combinations of detectors are satisfactory. The MTS-N cards have better results in the energy dependence, angular dependency, batch homogeneity and less signal fading, whereas the TLD-100 cards are less sensitive to light and more reproducible.

Advances in knowledge: Although previous studies showed several types of comparisons between TLDs, they have used limited parameters and different data analysis. This study has dealt with more comprehensive characterization methods and examinations combining TLD-100 and MTS-N cards.

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