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Optimized Filtered Back-Projection Tomographic Reconstruction Algorithm for the Step-Shift Scanning of a Sample

机译:用于样本的阶梯式扫描的优化滤波后投影断层扫描算法

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摘要

The variety of modern X-ray sources opens possibilities to conduct measurements of a wide range of different specimens. The range includes objects with various properties such as the density, the amount and types of defects, and the size which can significantly change from sample to sample. Due to the development of portable high energy X-ray sources like betatrons, it is now possible to investigate objects of big sizes. Although, the fact that the dimensions of such objects can exceed the dimensions of X-ray setups requires to develop new types of scanning geometries and to adopt the algorithms of reconstruction and visualization. The scanning of an object along its longest dimension is one of the ways for investigating such objects. In this article, we present the step-shift scanning approach and the adaptation of filtered back-projection algorithm for this type of measurement. The developed algorithm allows to obtain the visualization of the whole volume of the object from the combination of all scanning steps or to visualize the separate parts of the object from the truncated dataset.
机译:各种现代X射线源打开可能导致各种不同标本的测量的可能性。该范围包括具有各种性质的物体,例如密度,缺陷的数量和类型,并且可以从样品显着变化到样品的尺寸。由于诸如BetaTrons等便携式高能X射线源的开发,现在可以调查大尺寸的物体。虽然,这种物体的尺寸可以超过X射线设置的尺寸的事实需要开发新类型的扫描几何形状,并采用重建和可视化的算法。沿其最长尺寸的物体扫描物体是研究这些物体的方法之一。在本文中,我们介绍了对这种类型测量的滤波后投影算法的梯移扫描方法和适应。开发的算法允许从所有扫描步骤的组合中获得对象的整个体积的可视化,或者从截断的数据集可视化对象的单独部分。

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