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Quantitative low-kVp CT angiography in carotid artery imaging

机译:颈动脉成像中定量低kVP CT血管造影

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Shading and streaking artifacts brought by beam hardening and photon starvation is commonly observed in low-kVp CT angiography (CTA) for carotid artery imaging. Image quality is thus significantly degraded and a faithful observation of carotid artery is impeded. In this paper, we propose a novel quantitative image postprocessing scheme to eliminate these artifacts. In shading correction, we follow general knowledge of the relatively uniform CT number distribution in one tissue component, and continuous and low-frequency shading artifact distribution in projection domain. Coarse image segmentation is first applied to construct an ideal template image where each structure is filled with the same CT number of that specific tissue. By forward projecting the difference between uncorrected CT image and the ideal template, we estimate the continuous and low-frequency shading error signal in projection domain using low-pass filtering. An error map is then reconstructed using standard filtered back-projection algorithm from the error signal and added to the original image to correct for the shading artifacts. To suppress the increased noise and streaking artifacts, we first perform a texture extraction to estimate the noise distribution in the image and then incorporate the estimated noise variation into a nonlocal filtering method. The proposed scheme is evaluated in carotid CTA scan using a dual-source CT at 80 kVp, in which the shading and streaking artifacts can be successfully corrected by reducing the CT number error from 246 HU to 63 HU and spatial non-uniformity by a factor of 2.2, respectively. In the volume rendering generated from the corrected CT images, the visualization of carotid artery is improved substantially and comparable to that generated from a CTA scan at 140-kVp. The proposed method is implemented directly on the CT image without access to the raw projection data and is thus attractive for clinical application in low-dose CTA.
机译:在颈动脉成像的低kVP CT血管造影(CTA)中通常观察到通过束硬化和光子饥饿引起的遮光和条纹伪像。因此,图像质量显着降低,阻碍了颈动脉的忠实观察。在本文中,我们提出了一种新颖的定量图像后处理方案来消除这些伪影。在遮蔽校正中,我们遵循一个组织成分中相对均匀的CT号分布的一般知识,以及投影域中的连续和低频着色伪像分布。首先应用粗糙图像分割以构建理想的模板图像,其中每个结构填充具有相同的该特定组织的CT数。通过向前投影未校正CT图像和理想模板之间的差异,我们使用低通滤波估计投影域中的连续和低频着色误差信号。然后使用来自误差信号的标准过滤的背投算法重建错误映射,并将其添加到原始图像以校正阴影伪像。为了抑制增加的噪声和条纹伪像,我们首先执行纹理提取以估计图像中的噪声分布,然后将估计的噪声变化结合到非识别滤波方法中。在80 kVp下使用双源CT在颈动脉CTA扫描中评估所提出的方案,其中可以通过将CT数误差从246胡锦略246u至63u和空间不均匀的空间不均匀地,成功校正阴影和条纹伪像2.2分别为2.2。在从校正的CT图像产生的体积渲染中,颈动脉的可视化基本上和与从140-KVP的CTA扫描产生的那样改善。所提出的方法直接在CT图像上实现,无需进入原始投影数据,因此对低剂量CTA的临床应用具有吸引力。

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