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Monotonic iterative reconstruction algorithms for targeted reconstruction in emission and transmission computed tomography

机译:用于发射和透射计算机层析成像中目标重建的单调迭代重建算法

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Targeted reconstruction is reconstruction of a portion of an object, even when sufficient data are available to reconstruct the entire object. It is used in CT to zoom in on a region using smaller pixels without the burden of reconstructing a larger array. This is straightforward when using analytic algorithms. It is less apparent how to perform this kind of targeted reconstruction using iterative algorithms, since these algorithms involve reprojecting the entire object for comparison with the data. In this work, we consider two approaches to this problem. One is a simple extension of an approach previously proposed by Ziegler but which better preserves the statistical properties of the raw data. An initial analytic reconstruction is performed, the ROI of interest is removed, and what remains is reprojected to obtain an estimate of the contributions of the area outside the ROI to the projections. Then this estimate is added to the projections of the ROI at each iteration, allowing for comparison to be made with the original, unmodified data. The second approach treats the set of non-ROI projections as a second vector of unknowns, in addition to the pixel values within the ROI. We then seek to maximize a joint penalized likelihood objective function and we do so using an alternating update strategy that is guaranteed to monotonically increase the objective function.
机译:定向重建是对象的一部分的重建,即使有足够的数据可用于重建整个对象。它在CT中用于放大使用较小像素的区域,而无须重建较大阵列。使用解析算法时,这很简单。使用迭代算法执行这种有针对性的重构的方法不太明显,因为这些算法涉及重新投影整个对象以与数据进行比较。在这项工作中,我们考虑了解决此问题的两种方法。一种是Ziegler先前提出的方法的简单扩展,但是可以更好地保留原始数据的统计属性。执行初始分析重建,除去感兴趣的ROI,然后对剩余的投影进行重新投影,以获得ROI外部区域对投影的贡献的估计值。然后,此估算值将在每次迭代时添加到ROI的投影中,从而可以与原始的未修改数据进行比较。除了ROI中的像素值之外,第二种方法还将这组非ROI投影视为未知的第二矢量。然后,我们寻求使联合惩罚似然目标函数最大化,并使用能够保证单调增加目标函数的交替更新策略来这样做。

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