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Coherent x-ray scatter projection imaging using an array of monoenergetic pencil beams

机译:使用单元铅笔梁阵列的相干X射线分散投影成像

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Traditional projection x-ray imaging utilizes only the information from the primary photons. Low-angle coherent scatter images can be made simultaneous to the primary images and provide additional information. To speed up acquisition time for coherent scatter projection imaging, we developed disentangling algorithms for the overlapping scatter patterns generated by multi pencil-beam geometries. A system at the Canadian Light Source synchrotron was configured which utilizes a custom collimator designed to convert a 33.17 keV monoenergetic fan beam from a Laue monochromator into multiple pencil beams by using 3 mm thick tungsten alloy stoppers. The pencil beams then travel through the sample and are absorbed by a tungsten bar. A digital flat panel detector records the superimposed scatter patterns from the beams. The sample is scanned through the beams using an automated step-and-shoot setup. The pixel value of the coherent scatter image is generated by integrating the radial profile (scatter intensity versus scattering angle) over an angular range. An MLEM-based iterative method and a least-squares method were developed to disentangle the scatter patterns. Although past work has primarily been applied to medicine, other applications include non-destructive testing and security.
机译:传统的投影X射线成像仅利用来自初级光子的信息。低角度相干散射图像可以同时对主图像进行并提供附加信息。为了加速相干散射投影成像的采集时间,我们开发了多铅束几何形状产生的重叠散射图案的解剖算法。 Canadian光源同步rotron的系统配置,该系统利用定制准直器,设计用于通过使用3mm厚的钨合金塞子将33.17kev单色粉丝从Laue单色器转换为多个铅笔梁。然后铅笔束通过样品行进并被钨棒吸收。数字平板检测器从梁记录叠加的散射图案。使用自动化步骤和拍摄设置通过光束扫描样品。通过在角度范围内积分径向轮廓(散射强度与散射角)来产生相干散射图像的像素值。开发了一种基于MLEM的迭代方法和最小二乘法以解开散射图案。虽然过去的工作主要应用于医学,但其他应用程序包括非破坏性测试和安全性。

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