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Virtual pinhole-scanning spectroscopic imaging platform using low-coherence enhanced backscattering

机译:使用低相干增强后向散射的虚拟针孔扫描光谱成像平台

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摘要

We present that multiple mutually independent coherence areas can be used for simultaneous spatial filtering in an imaging platform as effective as pinhole scanning. In this imaging platform, the unique combination of low-spatial-coherence illumination and differential angle imaging allows us to take advantage of low-coherence enhanced-backscattering (LEBS) phenomenon to permit self-generated optical sectioning to the subsurface in a relatively large area. We further demonstrate that LEBS spectroscopic imaging substantially minimizes cross talk among adjacent pixels, rejects the background light caused by out-of-plane scattered light, and thereby enhances image contrast and resolution.
机译:我们目前可以将多个相互独立的相干区域用于像针孔扫描一样有效的成像平台中的同时空间滤波。在此成像平台中,低空间相干照明和微分角度成像的独特结合使我们能够利用低相干增强后向散射(LEBS)现象,在相对较大的区域内对地下进行自生光学切片。我们进一步证明,LEBS光谱成像可以最大程度地减少相邻像素之间的串扰,拒绝由面外散射光引起的背景光,从而增强图像的对比度和分辨率。

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