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Low-dose dual-energy electronic cleansing for fecal-tagging CT colonography

机译:小剂量双能电子清洁剂用于粪便标记CT结肠造影

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Dual-energy electronic cleansing (DE-EC) provides a promising means for cleansing the tagged fecal materials in fecal-tagging CT colonography (CTC). However, the increased radiation dose due to the double exposures in dual-energy CTC (DE-CTC) scanning is a major limitation for the use of DE-EC in clinical practice. The purpose of this study was to develop and evaluate a low-dose DE-EC scheme in fecal-tagging DE-CTC. In this study, a custom-made anthropomorphic colon phantom, which was filled with simulated tagged materials by non-ionic iodinated contrast agent (Omnipaque iohexol, GE Healthcare), was scanned by a dual-source CT scanner (SOMATON Definition Flash, Siemens Healthcare) at two photon energies: 80 kVp and 140 kVp with nine different tube current settings ranging from 12 to 74 mAs for 140 kVp, and then reconstructed by soft-tissue reconstruction kernel (B30f). The DE-CTC images were subjected to a low-dose DE-EC scheme. First, our image-space DE-CTC denoising filter was applied for reduction of image noise. Then, the noise-reduced images were processed by a virtual lumen tagging method for reduction of partial volume effect and tagging inhomogeneity. The results were compared with the registered CTC images of native phantom without fillings. Preliminary results showed that our low-dose DE-EC scheme achieved the cleansing ratios, defined by the proportion of the cleansed voxels in the tagging mask, between 93.18% (12 mAs) and 96.62% (74 mAs). Also, the soft-tissue preservation ratios, defined by the proportion of the persevered voxels in the soft-tissue mask, were maintained in the range between 94.67% and 96.41%.
机译:双能电子清洁(DE-EC)提供了一种希望在粪便标记的CT上系(CTC)中清洁标记的粪便材料的有希望的装置。然而,由于双能CTC(DE-CTC)扫描中的双曝光引起的辐射剂量增加是在临床实践中使用DE-EC的主要限制。本研究的目的是在粪便标记的DE-CTC中发育和评估低剂量的DE-EC方案。在该研究中,通过非离子碘化造影剂(Omnipaque Iohexol,GE Healthcare)填充了填充有模拟标记材料的定制拟蒽型结肠幻影(Omnipaque Iohexol,GE Healthcare),由双源CT扫描仪扫描(Somaton定义Flash,Siemens Healthcare )在两个光子能量下:80 kVp和140 kVp,九个不同管电流设置范围为120 kVp,然后由软组织重建核(B30f)重建。将DE-CTC图像进行低剂量DE-EC方案。首先,应用了我们的图像空间DE-CTC去噪过滤器以减少图像噪声。然后,通过虚拟内腔标记方法处理噪声降低的图像,用于降低部分体积效应和标记不均匀性。将结果与没有填充物的天然幻影的注册CTC图像进行比较。初步结果表明,我们的低剂量DE-EC方案达到了由标记掩模中清洁体素的比例定义的清洁比,在93.18%(12mas)和96.62%(74 mas)之间。而且,由软组织掩模中的悬臂素比例定义的软组织保存比保持在94.67%和96.41%之间的范围内。

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