首页> 外文会议>Mexican Symposium on Medical Physics >Dependence of the TLD-300 Glow Curve on the Photon Field Direction of Incidence. Studies in Air and in Phantom for Mammography and CT X-Rays
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Dependence of the TLD-300 Glow Curve on the Photon Field Direction of Incidence. Studies in Air and in Phantom for Mammography and CT X-Rays

机译:TLD-300发光曲线对光子场的入射方向。空气和乳房X线照相和CT X射线的幻影研究

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The glow curve of the CaF2:Tm thermoluminescent dosimeter (TLD-300) has the remarkable property of showing sensitivity to the energy of the radiation field. Careful analyses of the TLD-300 glow curve enable to determine the effective energy of the incident low- and intermediate- energy X ray photons, with a typical accuracy of 1 keV. The effect is consequence of different efficiencies for the high- and low- temperature peaks as a function of the secondary spectrum ionization density. Since the TLD-300 dosimeters have parallelepiped shape (3.2× 3.2× 0.89 mm~3) and the spectra incident on its different sides do suffer a distinctive spectral hardening as they traverse the dosimeter, we have investigated the dependence of the emitted light and the glow curve shape on the beam direction of incidence with respect to the dosimeter geometrical shape. We have exposed dosimeters to photon spectra with effective energies between 15 and 60 keV (mammography and computed tomography, CT, beams) and studied the integrated TL response and the glow curve, for irradiations in air (essentially uni-directional) and inside phantoms (with an important multidirectional component from scattered radiation). Two limit cases were investigated: beam incidence on the main face (3.2 ×3.2 mm~2) and incidence on a side face (3.2 ×0.89 mm~2). A rigorous glow curve deconvolution process was applied to obtain 7 peaks, following our laboratory protocol. The observations with CT beams were interpreted by Monte Carlo simulations. Results showed that for irradiation in air, the ratio of integrated thermoluminescent response after side- and main-face exposures was about 0.3 at mammography energies (15-17 keV effective energy) and about 0.8 at CT energies (45 - 58 keV effective energy). These ratios became 0.6 - 0.7 and 0.9 - 1.0, respectively, inside plastic phantoms appropriate for each clinical modality. The glow curve analysis showed that, both for mammography and CT energies inside a phantom, there
机译:CAF2:TM热致发光剂量计(TLD-300)的发光曲线具有显示对辐射场能量的敏感性的显着性质。仔细分析TLD-300辉光曲线使得能够确定入射的低和中间能量X射线光子的有效能量,典型精度为1 keV。由于次要光谱电离密度的函数,其效率是不同效率的不同效率。由于TLD-300剂量计具有平行六面体形状(3.2×3.2×0.89mm〜3),并且在其不同侧面上的光谱发生在其遍历剂量表时遭受独特的光谱硬化,我们已经研究了发出的光的依赖性发光曲线形状在光束入射方向上相对于剂量表几何形状。我们将剂量计暴露于光子光谱,具有15至60keV(乳房X光检查和计算断层扫描,CT,梁)之间的有效能量,并研究了集成的TL响应和发光曲线,用于空气中的照射(基本上是单向的)和内部的幻影(具有来自散射辐射的重要多向组件)。研究了两个极限情况:主面上的光束入射(3.2×3.2mm〜2)和侧面的入射(3.2×0.89mm〜2)。施用严格的发光曲线卷积过程以遵循我们实验室方案的7峰。 Monte Carlo仿真解释了具有CT梁的观察。结果表明,对于空气中的照射,在乳房X线摄影能量(15-17kev有效能量)和CT能量(45-58kev有效能量)下约为0.8,侧面和主面暴露后的综合热辐发光响应的比例约为0.3 。这些比率分别为0.6-0.7和0.9-1.0,内部塑料杂色,适用于每个临床模型。发光曲线分析表明,用于乳房X光检查和幻影内的CT能量,在那里

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