首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Hybrid Monte Carlo and deterministic simulation approach for modeling a computed radiography imaging chain from X-ray exposure to optical readout
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Hybrid Monte Carlo and deterministic simulation approach for modeling a computed radiography imaging chain from X-ray exposure to optical readout

机译:混合蒙特卡罗和确定性仿真方法,用于建模计算的X射线摄影到光学读数

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Simulation of radiographic inspection is of great interest for experimental outcomes prediction and optimal operating condition determination. As concerns computed radiography (CR), the use of photo-stimulable imaging plates and laser scanners, implies modeling the behavior of a multi-stages detector. As a consequence, both the X-ray and the optical system responses have to be handled. Moreover, for high energy X-rays, two issues often trouble CR simulation: long running time and X-ray scattering image contribution, which should not be neglected. To overcome these issues, we have developed a complete hybrid model which is the first available one at such energies. In our approach, the imaging process is decomposed into three independent successive stages: X-ray attenuation by an object, X-ray latent image generation, and optical readout. A deterministic code is applied to obtain rapidly the transmitted X-ray image emerging from a complex object. The energy deposition is then simulated by a convolution of the transmitted X-ray image with a CR detector response model, which was obtained off-line by a Monte Carlo tool. Then, optical readout is modeled using the same hybrid approach, where the optical response (laser light spreading in the imaging plate) was obtained by Monte Carlo and laser scanning is modeled analytically. A good agreement has been observed between the proposed hybrid model and a full Monte Carlo approach for the X-ray energy deposition stage. A realistic X-ray inspection case study has been chosen to emphasize the interest of this complete hybrid model. The comparison of three different detector configurations and the influence of readout laser power are illustrated.
机译:射线照相检测的模拟对于实验结果预测和最佳操作条件确定具有很大的兴趣。如涉及计算的射线照相(CR),使用光刺激的成像板和激光扫描仪意味着建模多级检测器的行为。结果,必须处理X射线和光学系统响应。此外,对于高能X射线,两个问题经常麻烦CR仿真:长时间运行时间和X射线散射图像贡献,这不应该被忽略。为了克服这些问题,我们开发了一个完整的混合模型,它是第一个在此类能量中提供的模型。在我们的方法中,成像过程被分解成三个独立的连续阶段:由对象,X射线潜像生成和光学读出的X射线衰减。应用确定性代码以快速获得从复杂对象出现的发射X射线图像。然后通过具有CR检测器响应模型的透射X射线图像的卷积来模拟能量沉积,该CR检测器响应模型由蒙特卡罗工具离线获得。然后,使用相同的混合方法建模光学读出,其中通过蒙特卡罗和成像板中的激光展开的激光展开)和激光扫描进行分析建模。在X射线能量沉积阶段的X射线能量沉积阶段,拟议的混合模型和全蒙特卡罗方法之间已经观察到良好的一致性。选择了一个现实的X射线检查案例研究,以强调这种完整的混合模型的兴趣。示出了三种不同检测器配置的比较和读出激光功率的影响。

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