首页> 外文期刊>Journal of electronic imaging >Reconstruction of three-dimensional localized objects from limited angle x-ray projections: an approach based on sparsity and multigrid image representation
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Reconstruction of three-dimensional localized objects from limited angle x-ray projections: an approach based on sparsity and multigrid image representation

机译:从有限角度X射线投影重建三维局部对象:一种基于稀疏性和多网格图像表示的方法

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We report on three-dimensional image reconstruction from a limited set of computed tomography projections. We focus on configurations with very limited angle of view and on applications in which the image to be reconstructed is composed of one or several localized objects laying in a known background. We propose an original method based on the detection of the localized object voxels and on a sparse modeling of the image. Reconstruction is done by computing the maximum a posteriori estimator of the image parameters. To implement image reconstruction, we adopt a multigrid strategy in which coarse-to-fine resoluted images are successively reconstructed. This strategy provides detection of localized object voxels as well as accurate initial solutions at each resolution level. Each optimization stage is carried out by using an iterative deterministic descent algorithm. We propose a convergent single-site update algorithm that consists of successive constrained optimizations with respect to one voxel at a time. We show the performance of the multigrid method on simulated data corresponding to a set of limited angle cone-beam projections of a synthetic image. The results are accurate, while both memory storage and numerical time of computation are dramatically reduced compared to the monogrid reconstruction method.
机译:我们从有限的计算机断层扫描投影集中报告三维图像重建。我们专注于视角非常有限的配置,以及将要重构的图像由放置在已知背景中的一个或几个局部对象组成的应用。我们提出了一种基于局部对象体素检测和图像稀疏建模的原始方法。通过计算图像参数的最大后验估计量来完成重建。为了实现图像重建,我们采用了一种多网格策略,其中从粗到细的确定图像被连续重建。该策略可在每个分辨率级别提供对局部对象体素的检测以及准确的初始解决方案。通过使用迭代确定性下降算法执行每个优化阶段。我们提出了一种收敛的单站点更新算法,该算法包含一次针对一个体素的连续约束优化。我们在模拟数据上显示了多网格方法的性能,该模拟数据对应于一组合成图像的有限角度锥束投影。与单网格重构方法相比,结果是准确的,同时显着减少了内存存储和数值计算时间。

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