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An Iodine-Calcium Separation Analysis and Virtually Non-Contrasted Image Generation Obtained with Single Source Dual Energy MDCT

机译:用单源双能量MDCT获得碘钙分离分析和几乎非对比的图像生成

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Dual energy CT enables the differentiation between various materials by analyzing their unique attenuation spectral response. These responses are represented as vectors on an image-based energy map. Practically, this spectral information can be very noisy requiring further analysis. Furthermore, the material response vectors may be affected by beam-hardening and varied between images. A new dual-energy analysis approach is proposed to improve iodine-calcium separation. The new algorithm estimates the material response vectors of iodine, calcium and soft tissue. Then it estimates a voxel probability to be either iodine or calcium. This algorithm yields a better separation between iodine and calcium compounds. The above analysis can be used to generate virtually non-contrasted images. A complementary algorithm uses the estimated probabilities and the material response vectors to replace the iodine Hounsfield unit enhancement by the original soft tissue texture. This algorithm has the potential to eliminate the need for an initial non-contrast scan in multi-phasic MDCT clinical procedures, leading to reduced radiation exposure and fully registered studies. Phantom and clinical studies were performed using a single source double-decker dual-energy MDCT prototype. The results showed a robust and reproducible iodine-calcium separation, even in cases with low dose and beam hardening effects. The virtual images, evaluated by two experienced radiologists, had similar image quality as compared to conventional non-contrasted images.
机译:双能量CT通过分析其独特的衰减光谱响应来实现各种材料之间的差异。这些响应表示为基于图像的能量图的载体。实际上,这种光谱信息可以非常嘈杂,需要进一步分析。此外,材料响应矢量可以受波束硬化并在图像之间变化的影响。提出了一种新的双能分析方法来改善碘钙分离。新算法估计碘,钙和软组织的材料响应载体。然后它估计体素概率是碘或钙。该算法产生碘和钙化合物之间的更好分离。以上分析可用于产生几乎非对比的图像。互补算法使用估计的概率和材料响应向量来取代原始软组织纹理的碘Hounsfield单元增强。该算法有可能在多相MDCT临床程序中消除初始非对比度扫描的需要,从而降低辐射暴露和完全注册的研究。使用单源双层双能量MDCT原型进行幻影和临床研究。结果表明,即使在低剂量和光束硬化效果的情况下,也表现出稳健和可重复的碘钙分离。与传统的非对比图像相比,由两个经验丰富的放射科医师评估的虚拟图像具有类似的图像质量。

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