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Complex dark-field contrast in grating-based x-ray phase contrast imaging

机译:基于光栅的X射线相位对比度成像中的复杂暗场对比度

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Without assuming that the sub-pixel microstructures of an object to be imaged distribute in space randomly, we investigate the influence of the object's microstructures on grating-based x-ray phase contrast imaging. Our theoretical analysis and 3D computer simulation study based on the paraxial Fresnel-Kirchhoff theory show that the existing dark-field contrast can be generalized into a complex dark-field contrast in a way such that its imaginary part quantifies the effect of the object's sub-pixel microstructures on the phase of intensity oscillations. A method based on the phase-attenuation duality that holds for soft tissues to be imaged at high x-ray energies is proposed to retrieve the imaginary part of the complex dark-field contrast for imaging. In comparison to the existing dark-field contrast, the imaginary part of complex dark-field contrast exhibits significantly stronger selectivity on the shape of the object's sub-pixel microstructures. Thus the x-ray imaging corresponding to the imaginary part of complex dark-field contrast can provide additional and complementary information to that corresponding to the attenuation contrast, phase contrast and the existing dark-field contrast.
机译:不假设将物体的子像素微结构随机成像在空间中分布,我们调查对象的微观结构对基于光栅的X射线相位对比度成像的影响。我们基于段近弗雷尼 - 柯克霍夫理论的理论分析和3D计算机仿真研究表明,现有的暗场对比度可以以其虚构的部分量化物体子的效果来推广到复杂的暗场对比度。像素微结构在强度振荡相位上。提出了一种基于相位衰减二元性的方法,其保持在高X射线能量的软组织上成像,以检索复杂暗场对比度的虚构部分以进行成像。与现有的暗场对比度相比,复杂的暗场对比度的虚部对物体子像素微结构的形状显着更强的选择性。因此,对应于复杂暗场对比度的虚部的X射线成像可以向对应于衰减对比度,相位对比度和现有的暗场对比度提供额外的和互补的信息。

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