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首页> 外文期刊>Physics in medicine and biology. >Quantitative imaging of electron density and effective atomic number using phase contrast CT.
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Quantitative imaging of electron density and effective atomic number using phase contrast CT.

机译:使用相衬CT对电子密度和有效原子序数进行定量成像。

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摘要

Compared to single energy CT, which only provides information for x-ray linear attenuation coefficients, dual-energy CT is able to obtain both the electron density and effective atomic number for different materials in a quantitative way. In this study, as an alternative to dual-energy CT, a novel quantitative imaging method based on phase contrast CT is presented. Rather than requiring two projection data sets with different x-ray energy spectra, diffraction-grating-based phase contrast CT is capable of reconstructing images of both linear attenuation and refractive index decrement from the same projection data using a single x-ray energy spectra. From the two images, quantitative information of both the electron density and effective atomic number can be extracted. Two physical phantoms were constructed and used to validate the presented method. Experimental results demonstrate that (1) electron density can be accurately determined from refractive index decrement through a linear relationship, and (2) the effective atomic number can be explicitly derived from the ratio of the linear attenuation to refractive index decrement using a power function plus a constant. The presented method will provide insight into the technique of material separation and find its use in medical and industrial applications.
机译:与仅提供x射线线性衰减系数信息的单能CT相比,双能CT能够以定量方式获得不同材料的电子密度和有效原子序数。在这项研究中,作为双能CT的替代方法,提出了一种基于相衬CT的新型定量成像方法。基于衍射光栅的相衬CT不需要使用具有不同X射线能谱的两个投影数据集,而是能够使用单个X射线能谱从同一投影数据重建线性衰减和折射率递减的图像。从这两个图像中,可以提取出电子密度和有效原子序数的定量信息。构造了两个物理模型并用于验证所提出的方法。实验结果表明,(1)可以通过线性关系从折射率递减准确地确定电子密度,并且(2)可以使用幂函数加线性衰减与折射率递减之比来明确得出有效原子序数。一个常数。提出的方法将提供对材料分离技术的深入了解,并找到其在医学和工业应用中的用途。

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