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首页> 外文期刊>Computational Imaging, IEEE Transactions on >Spatial-Spectral Representation for X-Ray Fluorescence Image Super-Resolution
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Spatial-Spectral Representation for X-Ray Fluorescence Image Super-Resolution

机译:X射线荧光图像超分辨率的空间光谱表示

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摘要

X-ray fluorescence (XRF) scanning of works of art is becoming an increasing popular nondestructive analytical method. The high quality XRF spectra is necessary to obtain significant information on both major and minor elements used for characterization and provenance analysis. However, there is a tradeoff between the spatial resolution of an XRF scan and the signal-to-noise ratio (SNR) of each pixel's spectrum, due to the limited scanning time. In this project, we propose an XRF image super-resolution method to address this tradeoff; thus, obtaining a high spatial resolution XRF scan with high SNR. We fuse a low-resolution XRF image and a conventional RGB high-resolution image into a product of both high spatial and high spectral resolution XRF image. There is no guarantee of a one to one mapping between XRF spectrum and RGB color since, for instance, paintings with hidden layers cannot be detected in visible but can in X-ray wavelengths. We separate the XRF image into the visible and nonvisible components. The spatial resolution of the visible component is increased utilizing the high-resolution RGB image, whereas the spatial resolution of the non-visible component is increased using a total variation super-resolution method. Finally, the visible and nonvisible components are combined to obtain the final result.
机译:艺术品的X射线荧光(XRF)扫描正在成为一种越来越流行的无损分析方法。高质量XRF光谱对于获得用于表征和物源分析的主要和次要元素的重要信息是必不可少的。但是,由于扫描时间有限,在XRF扫描的空间分辨率和每个像素光谱的信噪比(SNR)之间需要权衡。在本项目中,我们提出了一种XRF图像超分辨率方法来解决这一折衷方案。因此,可以获得具有高SNR的高空间分辨率XRF扫描。我们将低分辨率XRF图像和常规RGB高分辨率图像融合为高空间分辨率和高光谱分辨率XRF图像的乘积。不能保证XRF光谱与RGB颜色之间存在一对一的映射关系,因为例如,带有隐藏层的绘画无法在可见光中检测到,而可以在X射线波长中检测到。我们将XRF图像分为可见和不可见分量。利用高分辨率的RGB图像可以提高可见分量的空间分辨率,而使用总变化超分辨率方法可以提高非可见分量的空间分辨率。最后,将可见分量和不可见分量合并以获得最终结果。

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