论文标题

X射线CT光谱校正中散射特性的分析

An Analysis of Scatter Characteristics in X-ray CT Spectral Correction

论文作者

Zhang, Tao, Chen, Zhiqiang, Zhou, Hao, Bennett, N. Robert, Wang, Adam S., Gao, Hewei

论文摘要

X射线散射仍然是体积计算机断层扫描(CT)的主要物理挑战,其物理和统计行为通常被利用,以消除其对CT图像质量的影响。在这项工作中,我们对光谱校正期间的散射分布和散射与初级比率(SPR)的散射分布和散射方式(SPR)的方式进行了深入推导,从而导致对散射特性的有趣发现:在去除散射之前应用光谱校正时,SPR对CT投影的影响将通过映射功能的第一个衍生物来缩放;虽然传输结构域中的散射分布将按照映射函数的第一个衍生物的乘积和映射之前和之后的投影差的自然指数缩放。这种散点行为的这种表征提供了一种补偿SPR的分析方法,以及近似光谱校正后的散射分布的变化,尽管它们两个都可能严重扭曲,因为光谱校正中的线性化映射函数可能从一个探测器像素到另一个探测器像素有很大变化。我们对CATPHAN幻影和拟人化胸部幻影进行SPR补偿的评估,以验证散射的特征。此外,使用具有飞行焦点技术(SMFF)的光谱调制器直接将这种散点特性直接用于CT成像中,以证明其在实际应用中的潜力。

X-ray scatter remains a major physics challenge in volumetric computed tomography (CT), whose physical and statistical behaviors have been commonly leveraged in order to eliminate its impact on CT image quality. In this work, we conduct an in-depth derivation of how the scatter distribution and scatter to primary ratio (SPR) will change during the spectral correction, leading to an interesting finding on the property of scatter: when applying the spectral correction before scatter is removed, the impact of SPR on a CT projection will be scaled by the first derivative of the mapping function; while the scatter distribution in the transmission domain will be scaled by the product of the first derivative of the mapping function and a natural exponential of the projection difference before and after the mapping. Such a characterization of scatter's behavior provides an analytic approach of compensating for the SPR as well as approximating the change of scatter distribution after spectral correction, even though both of them might be significantly distorted as the linearization mapping function in spectral correction could vary a lot from one detector pixel to another. We conduct an evaluation of SPR compensations on a Catphan phantom and an anthropomorphic chest phantom to validate the characteristics of scatter. In addition, this scatter property is also directly adopted into CT imaging using a spectral modulator with flying focal spot technology (SMFFS) as an example to demonstrate its potential in practical applications.

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