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Iterative estimation of coherent-scattering profiles from given positions by use of a single-direction beam

机译:通过使用单向光束从给定位置迭代估计相干散射轮廓

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摘要

The coherent-scattering distribution is useful for characterization of materials in the medical field, and obtaining this information from a given position in the object is a useful new diagnostic approach. We propose a simpler geometric approach, which requires only a single-direction X-ray beam with no collimator in front of the detector. This method iteratively estimates coherent-scattering profiles from given positions along the beam path, based on the projections positioned at different object-to-detector distances. We confirmed the proposed calculation algorithm by numerical simulation and performed a simple experiment including attenuation correction. The accuracy of matching with the original profiles was dependent on the number of iterations, the distance between the first and second detectors, the distance between two objects, and the shape of the scattering profile. Whereas multiple scattering was the main problem in the experiment, the calculated scattering profiles matched well with the original profile. This technique indicates the feasibility of developing a coherent-scatter imaging system.
机译:相干散射分布可用于医学领域中材料的表征,从对象中的给定位置获取此信息是一种有用的新诊断方法。我们提出了一种更简单的几何方法,该方法仅需要单向X射线束,而检测器前无需准直器。该方法基于位于不同对象到检测器距离的投影,从沿光束路径的给定位置迭代估计相干散射轮廓。我们通过数值模拟确认了所提出的计算算法,并进行了包括衰减校正在内的简单实验。与原始轮廓的匹配精度取决于迭代次数,第一和第二检测器之间的距离,两个物体之间的距离以及散射轮廓的形状。尽管多次散射是实验中的主要问题,但计算的散射轮廓与原始轮廓非常吻合。该技术表明开发相干散射成像系统的可行性。

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