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Small-angle scattering computed tomography (SAS-CT) using a Talbot-Lau interferometer and a rotating anode x-ray tube: theory and experiments

机译:使用Talbot-Lau干涉仪和旋转阳极X射线管的小角散射计算机断层扫描(SAS-CT):理论和实验

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摘要

X-ray differential phase contrast imaging methods, including projection imaging and the corresponding computed tomography (CT), have been implemented using a Talbot interferometer and either a synchrotron beam line or a low brilliance x-ray source generated by a stationary-anode x-ray tube. From small-angle scattering events which occur as an x-ray propagates through a medium, a signal intensity loss can be recorded and analyzed for an understanding of the micro-structures in an image object. This has been demonstrated using a Talbot-Lau interferometer and a stationary-anode x-ray tube. In this paper, theoretical principles and an experimental implementation of the corresponding CT imaging method are presented. First, a line integral is derived from analyzing the cross section of the small-angle scattering events. This method is referred to as small-angle scattering computed tomography (SAS-CT). Next, a Talbot-Lau interferometer and a rotating-anode x-ray tube were used to implement SAS-CT. A physical phantom and human breast tissue sample were used to demonstrate the reconstructed SAS-CT image volumes.
机译:X射线微分相衬成像方法,包括投影成像和相应的计算机断层扫描(CT),已使用Talbot干涉仪以及由同步阳极x射线产生的同步辐射线或低亮度x射线源实现。射线管。通过X射线通过介质传播时发生的小角度散射事件,可以记录和分析信号强度损失,以了解图像对象中的微结构。使用Talbot-Lau干涉仪和固定阳极X射线管已证明了这一点。本文介绍了相应的CT成像方法的理论原理和实验实现。首先,通过分析小角散射事件的横截面得出线积分。此方法称为小角度散射计算机断层扫描(SAS-CT)。接下来,使用Talbot-Lau干涉仪和旋转阳极X射线管实施SAS-CT。物理模型和人体乳腺组织样本用于演示重建的SAS-CT图像体积。

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