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A 3-D Projection Model for X-ray Dark-field Imaging

机译:X射线暗场成像的3-D投影模型

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摘要

The X-ray dark-field signal can be measured with a grating-based Talbot-Lau interferometer. It measures small angle scattering of micrometer-sized oriented structures. Interestingly, the signal is a function not only of the material, but also of the relative orientation of the sample, the X-ray beam direction, and the direction of the interferometer sensitivity. This property is very interesting for potential tomographically reconstructing structures below the imaging resolution. However, tomographic reconstruction itself is a substantial challenge. A key step of the reconstruction algorithm is the inversion of a forward projection model. In this work, we propose a very general 3-D projection model. We derive the projection model under the assumption that the observed scatter distribution has a Gaussian shape. We theoretically show the consistency of our model with existing, more constrained 2-D models. Furthermore, we experimentally show the compatibility of our model with simulations and real dark-field measurements. We believe that this 3-D projection model is an important step towards more flexible trajectories and, by extension, dark-field imaging protocols that are much better applicable in practice.
机译:可以使用基于光栅的Talbot-Lau干涉仪测量X射线暗场信号。它测量微米级定向结构的小角度散射。有趣的是,信号不仅是材料的函数,而且还是样品的相对方向,X射线束方向和干涉仪灵敏度方向的函数。对于可能低于成像分辨率的断层摄影重建结构,此属性非常有趣。但是,层析成像重建本身是一个巨大的挑战。重建算法的关键步骤是前向投影模型的反演。在这项工作中,我们提出了一个非常通用的3D投影模型。我们在观察到的散布分布具有高斯形状的假设下得出投影模型。从理论上讲,我们证明了模型与现有的,更受约束的二维模型的一致性。此外,我们通过实验证明了该模型与仿真和实际暗场测量的兼容性。我们相信,这种3-D投影模型是朝着更灵活的轨迹迈进的重要一步,并且由此扩展了暗场成像协议,这些协议在实践中更加适用。

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