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Probabilistic Evaluation of Three-Dimensional Reconstructions from X-Ray Images Spanning a Limited Angle

机译:跨有限角度的X射线图像三维重建的概率评估

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摘要

An important part of computed tomography is the calculation of a three-dimensional reconstruction of an object from series of X-ray images. Unfortunately, some applications do not provide sufficient X-ray images. Then, the reconstructed objects no longer truly represent the original. Inside of the volumes, the accuracy seems to vary unpredictably. In this paper, we introduce a novel method to evaluate any reconstruction, voxel by voxel. The evaluation is based on a sophisticated probabilistic handling of the measured X-rays, as well as the inclusion of a priori knowledge about the materials that the object receiving the X-ray examination consists of. For each voxel, the proposed method outputs a numerical value that represents the probability of existence of a predefined material at the position of the voxel while doing X-ray. Such a probabilistic quality measure was lacking so far. In our experiment, false reconstructed areas get detected by their low probability. In exact reconstructed areas, a high probability predominates. Receiver Operating Characteristics not only confirm the reliability of our quality measure but also demonstrate that existing methods are less suitable for evaluating a reconstruction.
机译:计算机断层扫描的重要部分是根据一系列X射线图像对对象进行三维重建。不幸的是,某些应用程序无法提供足够的X射线图像。然后,重建的对象不再真正代表原始对象。在体积内部,准确性似乎发生了不可预测的变化。在本文中,我们介绍了一种新的方法来评估任何重建,逐个体素。该评估基于对所测量的X射线的复杂概率处理,以及对接收X射线检查的对象所组成的材料的先验知识的了解。对于每个体素,提出的方法输出一个数值,该数值表示在进行X射线检查时在体素位置存在预定义材料的可能性。到目前为止,尚缺乏这样的概率质量度量。在我们的实验中,错误的重建区域被低概率检测到。在精确的重建地区,高概率占主导地位。接收器的工作特性不仅证实了我们质量测量的可靠性,而且证明了现有方法不太适合评估重建。

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