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Evaluation of a 3D printed OSL eye lens dosimeter for photon dosimetry

机译:用于光子剂量测定的3D印刷OSL眼镜剂量计的评价

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This work demonstrates the use of high-resolution 3D printing to fine-tune the low energy dependence of an eye lens dosimeter holder associated to a BeO OSL detector element (ezClip). Five geometries of the denominated iBe dosimeter were developed, three with a variation in the thickness of the wall in front of the sensitive element that tailor the response at low radiation energies; and three with variations of width and curvature in order to vary the angular response of the dosimeter badges. Additive manufacturing was accomplished using stereolithography which gave a high degree of accuracy and precision. The optimised dosimeter badges showed a low energy and angular dependence, within -20% to +20% in the energy range of 24 keV to 662 keV and from 0 to 60 degrees incidence; and within -10% to +10% in the energy range of 24 keV to 164 keV and from 0 to 60 degrees incidence. In contrast to other dosimeters with higher effective atomic numbers, the use of BeO as the sensitive element resulted in a flat energy and angular dependence response at low energies. A significant reduction in the measurement uncertainty in the diagnostic radiology energy range was achieved.
机译:这项工作演示了使用高分辨率3D打印来微调与BeO OSL探测器元件(ezClip)相关联的眼透镜剂量计支架的低能量依赖性。开发了五种命名为iBe剂量计的几何形状,其中三种在敏感元件前面的壁厚上有变化,这些敏感元件可以在低辐射能量下调整响应;三个具有不同宽度和曲率,以改变剂量计徽章的角度响应。添加剂制造是使用立体光刻技术完成的,该技术具有较高的精度和精密度。优化后的剂量计徽章显示出较低的能量和角度依赖性,在24 keV到662 keV的能量范围内,在-20%到+20%之间,在0到60度的入射角范围内;在24千电子伏至164千电子伏和0至60度入射的能量范围内,在-10%至+10%范围内。与其他具有更高有效原子序数的剂量计相比,使用BeO作为敏感元件在低能下产生平坦的能量和角度依赖性响应。诊断放射学能量范围内的测量不确定度显著降低。

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