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Image enhancement by spectral-error correction for dual-energy computed tomography

机译:通过光谱误差校正对双能计算机断层扫描进行图像增强

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Dual-energy CT (DECT) was reintroduced recently to use the additional spectral information of X-ray attenuation and aims for accurate density measurement and material differentiation. However, the spectral information lies in the difference between low and high energy images or measurements, so that it is difficult to acquire accurate spectral information due to amplification of high pixel noise in the resulting difference image. In this work, an image enhancement technique for DECT is proposed, based on the fact that the attenuation of a higher density material decreases more rapidly as X-ray energy increases. We define as spectral error the case when a pixel pair of low and high energy images deviates far from the expected attenuation trend. After analyzing the spectral-error sources of DECT images, we propose a DECT image enhancement method, which consists of three steps: water-reference offset correction, spectral-error correction, and anti-correlated noise reduction. It is the main idea of this work that makes spectral errors distributed like random noise over the true attenuation and suppressed by the well-known anti-correlated noise reduction. The proposed method suppressed noise of liver lesions and improved contrast between liver lesions and liver parenchyma in DECT contrast-enhanced abdominal images and their two-material decomposition.
机译:最近重新引入了双能CT(DECT),以使用X射线衰减的附加光谱信息,并旨在进行精确的密度测量和材料区分。然而,光谱信息存在于低能量图像和高能量图像或测量之间的差异中,因此由于在所得差异图像中放大了高像素噪声,因此难以获取准确的光谱信息。在这项工作中,基于以下事实提出了一种DECT图像增强技术:随着X射线能量的增加,高密度材料的衰减会更快地减小。我们将低能量和高能量图像的像素对偏离预期衰减趋势的情况定义为光谱误差。在分析了DECT图像的光谱误差源之后,我们提出了一种DECT图像增强方法,该方法包括三个步骤:水参考偏移校正,光谱误差校正和反相关降噪。这项工作的主要思想是使频谱误差像随机噪声一样在实际衰减范围内分布,并通过众所周知的反相关降噪方法加以抑制。所提出的方法抑制了肝脏病变的噪声,并改善了DECT增强腹部图像及其两种物质分解过程中肝脏病变与肝实质之间的对比度。

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