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Enhancement of weakly tagged fecal materials in dual-energy CT colonography using spectral-driven iterative reconstruction technique

机译:利用光谱驱动迭代重建技术提高双能CT主影术中弱标记的粪便材料

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Dual-energy computed tomography is used increasingly in CT colonography (CTC). The combination of computer-aided detection (CAD) and dual-energy CTC has a high clinical value because it can automatically detect clinically significant colonic lesions in CTC images with higher accuracy than does single-energy CTC. While CAD has demonstrated its ability to detect small polyps, its performance is highly dependent on the quality of the input images. The presence of artifacts such as beam hardening and image noise in ultra-low-dose CTC may severely degrade detection performance for small polyps. A further limitation to the effectiveness of CAD are the weakly tagged fecal materials in the colon that may cause false-positive detections. In this work, we developed a dual-energy method for enhancing the appearance of weakly tagged fecal materials in CTC images. The proposed method consists of two stages: 1) the detection of weakly tagged fecal materials by use of sinogram-based image decomposition and 2) the enhancement of the detected tagged fecal materials in the images using an iterative reconstruction method. In the first stage, the ultra-low-dose dual-energy projection data obtained from a CT scanner are decomposed into two basis materials - soft tissue and fecal-tagged material (iodine). Virtual monochromatic projection data are calculated from the material decomposition at a pre-determined energy. The iodine-decomposed sinogram and the virtual monochromatic projection data are then used as input to an iterative reconstruction method. In the second stage, virtual monochromatic images are reconstructed iteratively while the intensity of weakly tagged iodine in the images is enhanced. The performance of the proposed method was assessed qualitatively and quantitatively. Preliminary results show that our method effectively enhances the visual appearance of weakly tagged fecal materials in the reconstructed CT images while reducing noise and improving the overall quality of the reconstructed images.
机译:双能计算机断层扫描越来越多地用于CT上系(CTC)。计算机辅助检测(CAD)和双能CTC的组合具有高临床价值,因为它可以在CTC图像中自动检测高精度的CTC图像中的临床显着显着的结肠病变,而不是单能CTC。虽然CAD已经证明了其检测小息肉的能力,但其性能高度依赖于输入图像的质量。超低剂量CTC中的诸如光束硬化和图像噪声的伪影的存在可能严重降低小息肉的检测性能。对CAD的有效性的进一步限制是结肠中可能导致假阳性检测的弱标记的粪便材料。在这项工作中,我们开发了一种用于增强CTC图像中弱标记粪便材料的外观的双能方法。所提出的方法包括两个阶段:1)通过使用基于正弦图图像分解和2的检测的弱标记粪便材料)所检测到的使用迭代重建方法中的图像标记的粪便材料的增强。在第一阶段,从CT扫描仪获得的超低剂量双能投影数据分解成两个基础材料 - 软组织和粪便标记的材料(碘)。虚拟单像投影数据以预定能量的材料分解计算。然后将碘分解的叠铭和虚拟单色投影数据用作迭代重建方法的输入。在第二阶段中,迭代地重建虚拟单色图像,同时增强图像中的图像中的弱标记碘的强度。质量和定量评估该方法的性能。初步结果表明,我们的方法有效地增强了重建的CT图像中弱标记的粪便材料的视觉外观,同时降低了噪声并提高了重建图像的整体质量。

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