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Interior reconstruction using local inverse

机译:使用局部逆的内部重构

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Truncated projections can arise from a detector with a limited field of view (LFOV). Truncation artifacts can be reduced through extrapolation methods; however the reconstructed images with extrapolation are often over-corrected or under-corrected. Recently, an iterative reconstruction-reprojection algorithm was developed, which incorporated extrapolation with iterative algorithm. It gave the possibility to better reduce truncation artifacts compared to using the extrapolation method alone. This article builds a theoretic foundation for the above iterative reconstruction-reprojection algorithm. The theoretic foundation is suitable to parallel-beam, fan-beam and cone-beam computed tomography(CT). Two assumptions are summarized from the CT system. Then, a truncation-artifact- free solution for the problem of LFOV is derived from these assumptions. The solution contains a "local inverse" of matrix. The local inverse of a matrix is defined using the sub-matrix and its general inverse. The solution can be approximately implemented as the iterative reconstruction-reprojection algorithm which is just the algorithm mentioned above.
机译:视场(LFOV)受限的探测器可能会产生截断的投影。可以通过外推方法减少截断伪影;但是,带有外推法的重建图像通常会被过度校正或校正不足。最近,开发了一种迭代重建-重投影算法,该算法将外推与迭代算法结合在一起。与仅使用外推方法相比,它有可能更好地减少截断伪像。本文为上述迭代重构-重投影算法奠定了理论基础。该理论基础适用于平行束,扇形束和锥束计算机断层扫描(CT)。 CT系统总结了两个假设。然后,从这些假设中得出LFOV问题的无截断伪像的解决方案。该解决方案包含矩阵的“局部逆”。矩阵的局部逆使用子矩阵及其一般逆定义。该解决方案可以近似地实现为迭代重构-重投影算法,该算法就是上述算法。

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