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Image-Based Dual Energy CT using Optimized Precorrection Functions: A Practical New Approach to Material Decomposition in the Image Domain

机译:使用优化的预校正功能的基于图像的双能CT:一种在图像域中进行材料分解的实用新方法

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Dual energy CT (DECT) measures the object of interest using two different x-ray spectra in order to provide energy-selective CT images or in order to get the material decomposition of the object. Today, two decomposition techniques are known. Image—based DECT treats the rawdata sets as being independent until they are reconstructed. Prior to reconstruction the rawdata undergoes the typical water precorrection. The reconstructed images are then linearly combined to obtain material-selective DECT images.The second decomposition technique is raw data-based. Rawdata-based DECT is passing the rawdata through a decomposition function D(q_1,p_2) followed by image reconstruction. Rawdata-based decomposition is exact and the final image will not show beam hardening artifacts. However, ra-wadata-based decomposition requires consistent rawdata sets.Our new imaged-hased method uses generalized precorrection functions p_1(q_1) that do not aim at delivering cupping artifact-free single energy images but that aim at delivering an improved DECT image by using the linear combination p_1(q_1)+p_2(q_2), which can also be carried out in image domain.This work compares the ability of the three methods to perform material decomposition and to provide energy-selective monochromatic CT images. Due to its increased degrees of freedom the generalized precorrection functions significantly outperform the image quality achievable with conventional image-based DECT decomposition. Nevertheless, the artifact content is still higher than when using rawdata-based decomposition techniques. Since our method can be realized as a polynomial function or as a look-up table, it can easily be used to substitute the water precorrection functions built into today's scanners. Thereby the approach is a practicable way to improve image-based DECT without changing the scanner software or hardware.
机译:双能CT(DECT)使用两个不同的X射线光谱测量感兴趣的对象,以提供能量选择性CT图像或获取对象的材料分解。今天,已知两种分解技术。基于图像的DECT会将原始数据集视为独立的,直到重建它们为止。在重建之前,原始数据会进行典型的水预校正。然后将重建的图像进行线性组合以获得材料选择的DECT图像。 第二种分解技术是基于原始数据的。基于原始数据的DECT会将原始数据通过分解函数D(q_1,p_2)传递,然后进行图像重建。基于原始数据的分解是精确的,最终图像将不会显示束硬化伪影。但是,基于ra-wadata的分解需要一致的原始数据集。 我们的新成像处理方法使用广义预校正函数p_1(q_1),这些函数不旨在提供无拔罐伪影的单能图像,而是旨在通过使用线性组合p_1(q_1)+ p_2(q_2)来提供改进的DECT图像,也可以在图像域中进行。 这项工作比较了三种方法执行材料分解和提供能量选择性单色CT图像的能力。由于其增加的自由度,广义的预校正功能明显优于传统的基于图像的DECT分解可获得的图像质量。但是,与使用基于原始数据的分解技术时相比,工件的内容仍然更高。由于我们的方法可以实现为多项式函数或查询表,因此可以轻松地替代当今扫描仪中内置的水预校正函数。因此,该方法是在不更改扫描仪软件或硬件的情况下改进基于图像的DECT的可行方法。

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