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K-edge eliminated material decomposition method for dual-energy X-ray CT

机译:K-Edge消除了双能X射线CT的材料分解方法

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摘要

In medical dual-energy CT, projection-domain decomposition is typically used to process the acquired two projection datasets. However, when a high atomic-number contrast-agent is introduced, its K-edge discontinuity challenges this method. In this work, we take advantage of the fact that the contrast agent and its solvent are known in adVance and propose to first decompose the attenuation coefficient functions of the contrast agent and its solvent to estimate the attenuation contribution of the K-shell photoelectric. Then, the contribution of the Kedge attenuation to the projection data is eliminated and the problem is decomposed to determine the attenuation coefficient functions of the other biological materials. Numerical experiments are shown to verify that the proposed method can give better results with less artifacts than the result of the direct projection-domain decomposition. Moreover, the variances of the decomposition coefficients, which is the index of the noise level of the decomposition coefficient image on the contrast regions, are smaller.
机译:在医学双能量CT中,通常使用投影域分解来处理所获取的两个投影数据集。然而,当引入高原子数对比剂时,其K边缘不连续性挑战这种方法。在这项工作中,我们利用预先已知的造影剂及其溶剂的事实,并提出首先将造影剂及其溶剂的衰减系数函数分解为估计K壳光电的衰减贡献。然后,消除了KEDGE衰减对投影数据的贡献,并且问题分解以确定其他生物材料的衰减系数函数。示出了数值实验,以验证所提出的方法可以通过比直接投影域分解的结果较少的伪像提供更好的结果。此外,分解系数的差异,即对比区域上分解系数图像的噪声水平的索引较小。

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