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Image reconstruction from the Compton scattering of X-ray fan beams in thick/dense objects

机译:X射线扇形束在厚/密物体中康普顿散射的图像重建

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Image reconstruction from Compton scattering measurements results in a nonlinear inverse problem that can produce multiple solutions, particularly in deep/dense objects. In this work, the nonlinearity of the problem is mitigated by a transformation which minimizes the difference of the ratios of measurements with overlapping fields of view. Overlapping eliminates one of the competing factors in the nonlinear problem, and allows solving the inverse problem of image reconstruction beyond the one-mean-free path equivalent depth previously needed to reach a solution in scatter-only imaging. The method also enables the use of wide X-ray fan beam sources, and is numerically applied to exploit the ability of scatter imaging to acquire single-side two-dimensional (2-D) and three-dimensional (3-D) images of relatively dense objects. Examples are presented to demonstrate the method's ability to deal with noisy measurements, at various degrees of overdetermination.
机译:从康普顿散射测量结果重建图像会导致非线性逆问题,该问题会产生多种解决方案,尤其是在深/稠密物体中。在这项工作中,通过最小化具有重叠视场的测量比率差异的转换,可以缓解问题的非线性。重叠消除了非线性问题中的竞争因素之一,并允许解决图像重建的逆问题,而该问题超出了仅在单点成像中获得解决方案所需的无均值路径等效深度。该方法还可以使用宽泛的X射线扇形束源,并且在数值上用于开发散射成像以获取单侧二维(2-D)和三维(3-D)图像的能力。相对密集的物体。举例说明了该方法在各种超确定程度下处理噪声测量的能力。

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