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Fast tomographic reconstruction via rotation-based hierarchical backprojection

机译:通过基于旋转的分层反投影实现快速层析成像重建

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摘要

We introduce a family of fast algorithms for tomographic backprojection in the parallel-beam geometry. The algorithms reduce the computational cost of backprojecting P projections onto an N x N pixel image from the conventional O((NP)-P-2) to O(N-2 log P). The new algorithms aggregate the projections in a hierarchical structure, with images in the hierarchy formed by the rotation and addition of other images made up of fewer projections. While these algorithms are related to existing fast algorithms, this work places them within the signal processing framework, providing a systematic means to optimize and adjust the trade-off between computational cost and accuracy. Rotations are performed separably in order that higher-order interpolators may be used with low computational cost. The same ideas are applied to create a tomographic projection algorithm, which computes projections of an N x N pixel image onto P view-angles at a cost of O( N2 log P).
机译:我们介绍了一系列用于平行光束几何中的层析反投影的快速算法。该算法减少了将P投影从常规O((NP)-P-2)到O(N-2 log P)的投影投影到N x N像素图像上的计算成本。新算法将投影聚合到一个层次结构中,而层次结构中的图像则通过旋转和添加其他图像来形成,这些图像由较少的投影组成。尽管这些算法与现有的快速算法有关,但这项工作将它们放置在信号处理框架中,从而提供了一种系统的方法来优化和调整计算成本和精度之间的权衡。旋转是分开执行的,以便可以以较低的计算成本使用高阶插值器。将相同的思想应用于创建断层摄影投影算法,该算法以O(N2 log P)为代价计算N x N像素图像在P个视角上的投影。

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