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首页> 外文期刊>IEEE Transactions on Nuclear Science >Combination of high resolution analytically computed uncollided flux images with low resolution Monte Carlo computed scattered flux images
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Combination of high resolution analytically computed uncollided flux images with low resolution Monte Carlo computed scattered flux images

机译:高分辨率解析计算的非碰撞通量图像与低分辨率蒙特卡洛计算的散射通量图像的组合

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摘要

A new computing model has been implemented in Sindbad, a simulation software dedicated to radiographic systems, to provide quite rapidly realistic radiographs of complex objects, including the scatter component of the photon flux. The new computing model consists of a coupling of two previous models: an analytical approach and a Monte Carlo one. The analytical simulation is used to compute a high resolution uncollided photon flux image whereas the Monte Carlo provides the scattered flux image. This latter image is computed as a scaling of a reduced fluence Monte Carlo scattered flux image. Scaling is possible thanks to the low resolution feature of the scattered flux image. After a detailed description of the method developed to perform the combination, we present a validation on a medical radiograph simulation. In spite of the quite complex geometry of the examined part and the large number of emitted photons, this new computing model provides a realistic radiograph with a good estimation of the scattered flux in a reasonable computation time.
机译:辛德巴德(Sindbad)已实现了一种新的计算模型,这是专门用于射线照相系统的仿真软件,可提供非常快速的逼真的复杂物体射线照相,包括光子通量的散射分量。新的计算模型包括两个先前模型的耦合:一种分析方法和一个蒙特卡洛模型。解析模拟用于计算高分辨率非碰撞光子通量图像,而蒙特卡洛提供了散射通量图像。后一图像被计算为减少注量的蒙特卡洛散射通量图像的缩放比例。由于散射通量图像的低分辨率特性,可以进行缩放。在详细介绍了开发用于执行组合的方法之后,我们在医学X射线照片模拟上进行了验证。尽管被检零件的几何形状非常复杂,并且发射的光子数量很多,但是这种新的计算模型可以在合理的计算时间内提供逼真的X射线照片,并且可以很好地估计散射通量。

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