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首页> 外文期刊>Journal of synchrotron radiation >Combining Monte Carlo methods with coherent wave optics for the simulation of phase-sensitive X-ray imaging
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Combining Monte Carlo methods with coherent wave optics for the simulation of phase-sensitive X-ray imaging

机译:结合蒙特卡罗方法和相干波光学器件来模拟相敏X射线成像

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摘要

Phase-sensitive X-ray imaging shows a high sensitivity towards electron density variations, making it well suited for imaging of soft tissue matter. However, there are still open questions about the details of the image formation process. Here, a framework for numerical simulations of phase-sensitive X-ray imaging is presented, which takes both particle- and wave-like properties of X-rays into consideration. A split approach is presented where we combine a Monte Carlo method (MC) based sample part with a wave optics simulation based propagation part, leading to a framework that takes both particle- and wavelike properties into account. The framework can be adapted to different phasesensitive imaging methods and has been validated through comparisons with experiments for grating interferometry and propagation-based imaging. The validation of the framework shows that the combination of wave optics and MC has been successfully implemented and yields good agreement between measurements and simulations. This demonstrates that the physical processes relevant for developing a deeper understanding of scattering in the context of phase-sensitive imaging are modelled in a sufficiently accurate manner. The framework can be used for the simulation of phase-sensitive X-ray imaging, for instance for the simulation of grating interferometry or propagation-based imaging.
机译:相敏X射线成像显示出对电子密度变化的高灵敏度,使其非常适合于软组织物质的成像。然而,关于图像形成过程的细节仍然存在未解决的问题。这里,提出了用于相敏X射线成像的数值模拟的框架,该框架考虑了X射线的粒子状和波状性质。提出了一种拆分方法,其中我们将基于蒙特卡洛方法(MC)的样本部分与基于波光学模拟的传播部分相结合,从而形成了一个同时考虑了粒子和波状特性的框架。该框架可适应不同的相敏成像方法,并已通过与光栅干涉测量和基于传播的成像实验进行比较而得到验证。框架的验证表明,波光学和MC的组合已成功实现,并且在测量和仿真之间产生了良好的一致性。这证明了以足够精确的方式对与在相敏成像的情况下发展对散射的更深理解有关的物理过程进行了建模。该框架可用于模拟相敏X射线成像,例如用于模拟光栅干涉法或基于传播的成像。

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