Suppr超能文献

使用平板扫描仪进行放射变色胶片剂量测定时的伪影及其由辐射诱导聚合物的光散射引起的原因。

The artefacts of radiochromic film dosimetry with flatbed scanners and their causation by light scattering from radiation-induced polymers.

作者信息

Schoenfeld Andreas A, Poppinga Daniela, Harder Dietrich, Doerner Karl-Joachim, Poppe Bjoern

机构信息

Department of Medical Radiation Physics, Carl von Ossietzky University, Oldenburg, Germany. Department of Radiation Therapy, Pius Hospital, Oldenburg, Germany.

出版信息

Phys Med Biol. 2014 Jul 7;59(13):3575-97. doi: 10.1088/0031-9155/59/13/3575. Epub 2014 Jun 9.

Abstract

Optical experiments and theoretical considerations have been undertaken in order to understand the causes of the 'orientation effect' and the 'parabola effect', the artefacts impairing the desired light absorption measurement on radiochromic EBT3 films with flatbed scanners. EBT3 films exposed to doses up to 20.9 Gy were scanned with an Epson Expression 10000XL flatbed scanner in landscape and portrait orientation. The horizontally and vertically polarized light components of the scanner were determined, and another Epson Expression 10000XL flatbed scanner was disassembled to examine its optical components. The optical properties of exposed and unexposed EBT3 films were studied with incident polarized and unpolarized white light, and the transmitted red light was investigated for its polarization and scattering properties including the distribution of the scattering angles. Neutral density filters were studied for comparison. Guidance was sought from the theory of light scattering from rod-like macromolecular structures. The drastic dose-dependent variation of the transmitted total light current as function of the orientation of front and rear polarizers, interpreted by light scattering theory, shows that the radiation-induced polymerization of the monomers of EBT3 films produces light scattering oscillators preferably polarized at right angles with the coating direction of the film. The directional distribution of the scattered light is partly anisotropic, with a preferred scattering plane at right angles with the coating direction, indicating light scattering from stacks of coherently vibrating oscillators piled up along the monomer crystals. The polyester carrier film also participates in these effects. The 'orientation' and 'parabola' artefacts due to flatbed scanning of radiochromic films can be explained by the interaction of the polarization-dependent and anisotropic light scattering from exposed and unexposed EBT3 films with the quantitative difference between the scanner's horizontally and vertically polarized light supply and with the limited directional acceptance of the scanner's light recording system.

摘要

为了理解“取向效应”和“抛物线效应”的成因,开展了光学实验和理论研究。这两种伪影会影响使用平板扫描仪对放射变色EBT3薄膜进行的理想光吸收测量。使用爱普生Expression 10000XL平板扫描仪,以横向和纵向取向扫描了接受剂量高达20.9 Gy的EBT3薄膜。测定了扫描仪的水平和垂直偏振光分量,并拆解了另一台爱普生Expression 10000XL平板扫描仪以检查其光学部件。用入射偏振和非偏振白光研究了曝光和未曝光EBT3薄膜的光学特性,并研究了透射红光的偏振和散射特性,包括散射角的分布。研究中性密度滤光片以供比较。从棒状大分子结构的光散射理论寻求指导。由光散射理论解释的透射总光电流随前后偏振器取向的剧烈剂量依赖性变化表明,EBT3薄膜单体的辐射诱导聚合产生了优先与薄膜涂层方向成直角偏振的光散射振荡器。散射光的方向分布部分是各向异性的,在与涂层方向成直角的方向上有一个优先散射平面,表明光散射来自沿单体晶体堆积的相干振动振荡器堆栈。聚酯载体薄膜也参与了这些效应。放射变色薄膜平板扫描产生的“取向”和“抛物线”伪影可以通过曝光和未曝光EBT3薄膜的偏振依赖性和各向异性光散射与扫描仪水平和垂直偏振光供应的定量差异以及扫描仪光记录系统有限的方向接受度之间的相互作用来解释。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验