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The relationship between wave and geometrical optics models of coded aperture type x-ray phase contrast imaging systems

机译:编码孔径型X射线相位对比成像系统的波与几何光学模型之间的关系

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摘要

X-ray phase contrast imaging is a very promising technique which may lead to significant advancements in medical imaging. One of the impediments to the clinical implementation of the technique is the general requirement to have an x-ray source of high coherence. The radiation physics group at UCL is currently developing an x-ray phase contrast imaging technique which works with laboratory x-ray sources. Validation of the system requires extensive modelling of relatively large samples of tissue. To aid this, we have undertaken a study of when geometrical optics may be employed to model the system in order to avoid the need to perform a computationally expensive wave optics calculation. In this paper, we derive the relationship between the geometrical and wave optics model for our system imaging an infinite cylinder. From this model we are able to draw conclusions regarding the general applicability of the geometrical optics approximation.
机译:X射线相衬成像是一种非常有前途的技术,可能会导致医学成像领域的重大进步。该技术临床实施的障碍之一是具有高相干性的X射线源的一般要求。 UCL的辐射物理学小组目前正在开发一种可与实验室X射线源配合使用的X射线相衬成像技术。系统的验证需要对较大的组织样本进行广泛的建模。为了帮助实现这一点,我们进行了一项研究,研究何时可以使用几何光学对系统进行建模,以避免需要进行计算上昂贵的波动光学计算。在本文中,我们导出了用于无限圆柱体成像的系统的几何模型和波动光学模型之间的关系。从这个模型中,我们能够得出关于几何光学近似的一般适用性的结论。

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