首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Effect of CsI(Tl) micro-conical-frustums on the performance of the pixelated CsI(Tl) scintillation screen in X-ray imaging
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Effect of CsI(Tl) micro-conical-frustums on the performance of the pixelated CsI(Tl) scintillation screen in X-ray imaging

机译:CsI(Tl)微型圆锥台在X射线成像中对像素化CsI(Tl)闪烁屏性能的影响

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The pixelated CsI(Tl) scintillation screen based on oxidized silicon micro-pore array template with CsI(Tl) microconical-frustums (CMCF) was proposed. The effect of the CMCF on the performance of the pixelated CsI(Tl) scintillation screen in X-ray imaging was studied by using Geant4 Monte Carlo simulation code. The variations of the light output (LO), modulation transfer function (MTF) and detective quantum efficiency (DQE) for the screen with the cone angle beta of the CMCF in X-ray imaging were revealed. The results show that the LO of the pixelated scintillation screen with CMCF is superior to that of the screens with CsI(Tl) micro-cylinders (CMC) or with reversed CsI(Tl) micro-conical-frustums (RCMCF), but the spatial resolution of the X-ray imaging system by using the pixelated scintillation screen with RCMCF is better than that by using the screens with CMCF or with CMC. At low frequency, the cone angle beta corresponding to DQEs from good to bad are 2.40 degrees, 0.00 degrees and -2.40 degrees. But at high frequency, the cone angle beta corresponding to DQEs from good to bad change to 2.40 degrees, -2.40 degrees and 0.00 degrees. The reason is that, for a pixelated scintillation screen, the DQE for the screen not only depends on the efficiency of X-ray absorption, but also depends on the number of scintillation photons exiting the bottom the screen per interacting X-ray photon and its Poisson excess, and MTF. The simulated results of DQEs show that the comprehensive performance of the pixelated CsI(Tl) screen with CMCF in X-ray imaging is better than that of the screens with CMC or with CRMCF.
机译:提出了一种基于氧化硅微孔阵列模板与CsI(Tl)圆锥形截头圆锥体(CMCF)的像素化CsI(Tl)闪烁屏。使用Geant4蒙特卡洛模拟代码研究了CMCF对X射线成像中像素化CsI(Tl)闪烁屏幕性能的影响。揭示了在X射线成像中屏幕的光输出(LO),调制传递函数(MTF)和检测量子效率(DQE)随CMCF锥角β的变化。结果表明,使用CMCF的像素化闪烁屏的LO优于使用CsI(Tl)的微圆柱体(CMC)或使用反向的CsI(Tl)的微锥截头圆锥体(RCMCF)的LO,但是在空间上通过使用带有RCMCF的像素化闪烁屏幕,X射线成像系统的分辨率要比使用带有CMCF或CMC的屏幕更好。在低频下,与DQE对应的锥角β从好到坏分别为2.40度,0.00度和-2.40度。但是在高频下,与DQE对应的锥角β从好到坏分别变为2.40度,-2.40度和0.00度。原因是,对于像素化闪烁屏而言,屏幕的DQE不仅取决于X射线吸收的效率,还取决于每个相互作用的X射线光子及其屏幕离开屏幕底部的闪烁光子的数量。泊松盈余和MTF。 DQE的仿真结果表明,使用CMCF的像素化CsI(Tl)屏幕在X射线成像中的综合性能要优于使用CMC或CRMCF的屏幕。

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