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A fast beam hardening correction method incorporated in a filtered back-projection based MAP algorithm

机译:一种快速光束硬化校正方法,其在基于滤波后投影的地图算法中

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摘要

The beam hardening effect can induce strong artifacts in CT images, which result in severely deteriorated image quality with incorrect intensities (CT numbers). This paper develops an effective and efficient beam hardening correction algorithm incorporated in a filtered back-projection based maximum a posteriori (BHC-FMAP). In the proposed algorithm, the beam hardening effect is modeled and incorporated into the forward-projection of the MAP to suppress beam hardening induced artifacts, and the image update process is performed by Feldkamp-Davis-Kress method based back-projection to speed up the convergence. The proposed BHC-FMAP approach does not require information about the beam spectrum or the material properties, or any additional segmentation operation. The proposed method was qualitatively and quantitatively evaluated using both phantom and animal projection data. The experimental results demonstrate that the BHC-FMAP method can efficiently provide a good correction of beam hardening induced artefacts.
机译:光束硬化效果可以在CT图像中诱导强大的伪像,其具有不正确的强度(CT编号)的图像质量严重劣化。本文开发了一种有效且有效的光束硬化校正校正算法,其基于滤波后的背部投影的最大(BHC-FMAP)。在所提出的算法中,光束硬化效果被建模并结合到地图的前向投影中以抑制光束硬化诱导的伪像,并且通过基于Feldkamp-Davis-kress方法执行的图像更新处理来加速收敛。所提出的BHC-FMAP方法不需要关于光谱频谱或材料特性的信息,或任何附加分段操作。所提出的方法使用幻像和动物投影数据定性和定量地评估。实验结果表明,BHC-FMAP方法可以有效地提供良好的光束硬化诱导的艺术品的校正。

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