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Systematic investigation of the reconstruction of images from transmission tomography using a Filtered Backprojection and an iterative OSML reconstruction algorithm

机译:系统地研究通过滤波反射和迭代OSML重建算法从传输断层扫描重建图像的重建

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The reconstruction of 2D images from fan-beam transmission measurements is performed with Filtered-Backprojection (FBP) and an Ordered Subsets Maximum Likelihood (OSML) method. A special software phantom, which allows measuring the resolution and noise in a non-ambiguous way, is used to simulate transmission tomography scans with different signal-to-noise ratios. The noise and modulation transfer function is calculated for both FBP and OSML reconstruction at several positions distributed over the field of view (FOV). The OSML method is able to achieve a nearly homogeneous high resolution over the whole field-of-view, which is not possible with FBP, because the OSML reconstruction from the focus-centered projections intrinsically uses the improvement of the resolution due to the quarter detector offset without any extra re-binning. In addition, the reconstruction with OSML has a higher resolution than FBP at a similar level of noise, or equivalent, the OSML method achieves a lower level of noise compared to FBP at the same resolution. The reconstruction with OSML can save a factor of about 2 of dose with respect to FBP.
机译:使用滤波反射(FBP)和有序的子集最大似然(OSML)方法来执行来自扇形波束传输测量的2D图像的重建。一种特殊的软件幻像,允许以非模糊的方式测量分辨率和噪声,用于模拟具有不同信噪比的传输断层扫描扫描。在分布在视野(FOV)上的多个位置,计算噪声和调制传递函数的FBP和OSML重建。 OSML方法能够在整个视野下实现几乎同质的高分辨率,这是FBP不可能的,因为来自焦点中心的投影的OSML重建本质上使用由于季度检测器引起的分辨率的提高偏移没有任何额外的重新融合。此外,与OSML的重建具有比相似级别的噪声水平的分辨率更高,或者等效,与相同的分辨率相比,OSML方法达到了较低的噪声水平。与OSML的重建可以相对于FBP节省约2个倍数。

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