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A correction method for dual energy liquid CT image reconstruction with metallic containers

机译:金属容器双能液体CT图像重建的校正方法

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摘要

With its capability of material discrimination, dual energy computed tomography (DECT) is widely used in security inspection for the purpose of detecting contraband. DECT provides effective atomic number image and electron density image in addition to traditional attenuation images. In dual energy liquid inspection system, the presence of metallic containers will cause partial volume effect (PVE) that leads to severe deviation in effective atomic number image. Usually, the deviation is too large for a reliable material discrimination and may cause false results. In this paper, a projection splitting method is proposed to combat the PVE. This method is based on the assumption that a prior projection of the empty container is available and photoelectric and Compton coefficient integrals can be calculated via dual energy decomposition. Each integral is split into two parts by subtracting the integral of the empty container from the total integral. The subtraction removes the integral part contributed by the container, thus discarding the error source created by PVE that appears on the boundary of the sinogram. Images are reconstructed in which only the interior liquid area remains. Experiments are performed in a real liquid inspection system to demonstrate the effectiveness of this method. Accuracy of the reconstructed effective atomic number is greatly improved with this method, which helps a lot in determining the type of the object.
机译:双重能量计算机断层扫描(DECT)具有材料辨别能力,被广泛用于安全检查中,以检测违禁品。除传统衰减图像外,DECT还提供有效的原子序数图像和电子密度图像。在双能液体检查系统中,金属容器的存在会引起部分体积效应(PVE),导致有效原子序数图像严重偏离。通常,对于可靠的材料区分而言,偏差太大,并且可能导致错误的结果。本文提出了一种投影分割方法来对抗PVE。该方法基于以下假设:可以使用空容器的先前投影,并且可以通过双重能量分解来计算光电和康普顿系数积分。通过从总积分中减去空容器的积分,可以将每个积分分为两部分。减法将除去容器贡献的积分部分,从而丢弃出现在正弦图边界上的PVE所产生的误差源。重建图像,仅保留内部液体区域。实验在真实的液体检查系统中进行,以证明该方法的有效性。该方法大大提高了重建有效原子序数的准确性,对确定物体的类型有很大帮助。

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