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Fabrication and Evaluation of a Gd_2O_2S:Tb Phosphor Screen Film for Development of a CMOS-based X-ray Imaging Detector

机译:用于基于CMOS的X射线成像检测器开发的Gd_2O_2S:Tb荧光屏膜的制备和评估

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In this study, Gd_2O_2S:Tb phosphor screen films were fabricated by using a special particle-inbinder sedimentation method. The phosphor particles used in this study were manufactured in two sizes, 2.5-μm and 5-μm. To evaluate luminescence efficiency and the spatial resolution according to the thickness, we fabricated screen films with thicknesses of 120, 150, 170, and 210-μm. The spatial resolution of the fabricated films was assessed by using an edge method to measure the modulation transfer function (MTF). From the experimental results, the spatial resolution of the mammography exposures (low-energy X-ray quality) was better than that of dental radiography (high-energy X-ray quality). Also, with the same film thickness, the screen with 2.5-μm particles had better resolution than the screen with 5.0-μm particles, but it showed about 20% lower resolution than a commercial Gd_2O_2S:Tb screen. In the evaluation of the results for the dependence of the spatial resolution on the film's thickness, the 120-μm-thick screen showed the highest resolution, which was similar to that of a commercial screen.
机译:在这项研究中,Gd_2O_2S:Tb荧光屏膜采用特殊的颗粒-粘合剂沉积法制备。本研究中使用的磷光体颗粒有两种尺寸,分别为2.5微米和5微米。为了根据厚度评估发光效率和空间分辨率,我们制作了厚度为120、150、170和210μm的屏幕膜。通过使用边缘方法测量调制传递函数(MTF)来评估所制造薄膜的空间分辨率。从实验结果来看,乳腺X线摄影的空间分辨率(低能X射线质量)要比牙科X线摄影的空间分辨率(高能X射线质量)更好。同样,在相同的膜厚度下,具有2.5μm颗粒的筛子比具有5.0μm颗粒的筛子具有更好的分辨率,但显示出的分辨率比市售Gd_2O_2S:Tb筛子低约20%。在评估空间分辨率对薄膜厚度的依赖性时,厚度为120μm的屏幕显示出最高的分辨率,这与商用屏幕的分辨率相似。

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