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Dual screen sandwich configurations for digital radiography

机译:数字射线照相的双屏夹层配置

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Motivated by recent advances in TFT array technology for display, this study develops a theoretical treatment of dual granular scintillating screens sandwiched around a light detector and applies this to investigate possible improvements in imaging performance of indirect active-matrix flat-panel imagers (AMFPI's) for x-ray applications, when dual intensifying screen configurations are used. Theoretical methods, based on previous studies of granular intensifying screens, are developed and applied to calculate modulation transfer function (MTF), normalized noise power spectrum (NNPS), Swank factor (As), Lubberts function L(f), and spatial frequency-dependent detective quantum efficiency (DQE(f)) for a variety of dual-screen detector configurations. Single-screen front illuminated (FI) and back illuminated (BI) configurations are also included in the analysis. DQE(f) is used as a performance metric to optimize and compare the performance of the various configurations. Large improvements in performance over single-screen systems are found possible, when the substrate layer between the light sensing array and the intensifying screen is optically thin. The ratio of the thicknesses of the two screens which optimizes DQE performance is generally asymmetric with the thinner screen facing the incident flux, and the ratio depends on the x-ray attenuation length in the phosphor material.
机译:通过最近的TFT阵列技术进行展示的推进,该研究发展了夹在光探测器周围的双粒状闪烁屏的理论处理,并应用这一点以研究间接有源矩阵平板成像器(AMFPI)的成像性能的可能改进X射线应用程序,当使用双强化屏幕配置时。基于先前研究粒状强化屏幕的理论方法,开发和应用于计算调制传递函数(MTF),归一化噪声功率谱(NNP),血管系数(AS),润滑剂功能L(F)和空间频率 - 依赖侦探量子效率(DQE(F))用于各种双屏探测器配置。单屏正面照明(FI)和反向照明(BI)配置也包括在分析中。 DQE(F)用作性能度量,以优化和比较各种配置的性能。当光感测阵列和强化屏幕之间的基板层是光学薄的时,发现在单屏系统上的性能大量改进。优化DQE性能的两个屏幕的厚度的比率通常与面向入射通量的较薄屏幕不对称,并且该比率取决于磷光体材料中的X射线衰减长度。

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