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光谱 X 射线成像:基于传播的相位对比有利的条件。

Spectral x-ray imaging: Conditions under which propagation-based phase-contrast is beneficial.

机构信息

School of Physics and Astronomy, Monash University, Clayton, VIC 3800, Australia.

出版信息

Phys Med Biol. 2020 Oct 7;65(20):205006. doi: 10.1088/1361-6560/aba318.

DOI:10.1088/1361-6560/aba318
PMID:32629430
Abstract

Energy-resolved attenuation data in spectral x-ray imaging enables material decomposition, in which the different materials inside an object can be identified and separated virtually. Material decomposition has the drawback of increased noise in the resulting material images relative to the measured images. Recently, spectral x-ray imaging was combined with propagation-based x-ray phase-contrast imaging, an x-ray technique that has the potential to greatly reduce image noise by utilizing wave-optical effects. The net combined effects on image noise of performing spectral material decomposition with phase-contrast are not yet well understood, and we provide a detailed theoretical investigation of this topic here. In particular, we investigate how the addition of phase-contrast in spectral imaging affects material decomposition compared to using conventional spectral attenuation data. We show how the underlying equations can be rearranged into parts that resemble low- and high-pass filters on the input images, from which we are able to identify different energy-dependent cases where phase-contrast is or is not advantageous. Our results suggest that the benefits of phase-contrast in the context of material decomposition are primarily restricted to x-ray energies under a certain threshold, where that threshold depends on the given material combination, and sits in a region where photoelectric absorption dominates x-ray attenuation. Additionally, we show that decomposition of the electron density using an image basis spanned by functions of the Alvarez-Macovski model benefits from phase-contrast, regardless of the x-ray energies. All our findings are based purely on theoretical considerations, and can, therefore, be used to determine the feasibility and utility of propagation-based phase-contrast in spectral x-ray imaging ahead of any data collection.

摘要

能谱 X 射线成像中的能量分辨衰减数据可实现物质分解,该技术可在虚拟层面上对物体内部的不同材料进行识别和分离。然而,物质分解的缺点是,与测量图像相比,生成的物质图像中的噪声增加。最近,能谱 X 射线成像与基于传播的 X 射线相位对比成像相结合,这种 X 射线技术通过利用波动光学效应,具有显著降低图像噪声的潜力。目前,关于能谱物质分解与相位对比相结合对图像噪声的综合影响尚未得到充分理解,因此我们在此详细研究了这一课题。具体而言,我们研究了与使用传统能谱衰减数据相比,在能谱成像中添加相位对比如何影响物质分解。我们展示了如何将基本方程重新排列为类似于输入图像的低通和高通滤波器的部分,由此我们能够确定不同的能量相关情况,在这些情况下,相位对比是有利还是不利。我们的研究结果表明,在物质分解的背景下,相位对比的优势主要限于特定阈值以下的 X 射线能量,该阈值取决于特定的材料组合,且位于光电吸收主导 X 射线衰减的区域。此外,我们还表明,无论 X 射线能量如何,使用由 Alvarez-Macovski 模型函数构成的图像基来分解电子密度,都能受益于相位对比。所有这些发现均基于纯理论考虑,因此,可在进行任何数据采集之前,确定基于传播的相位对比在能谱 X 射线成像中的可行性和实用性。

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