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Demosaiced pixel super-resolution for multiplexed holographic color imaging

机译:用于多路全息彩色成像的去马赛克像素超分辨率

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摘要

To synthesize a holographic color image, one can sequentially take three holograms at different wavelengths, e.g., at red (R), green (G) and blue (B) parts of the spectrum, and digitally merge them. To speed up the imaging process by a factor of three, a Bayer color sensor-chip can also be used to demultiplex three wavelengths that simultaneously illuminate the sample and digitally retrieve individual set of holograms using the known transmission spectra of the Bayer color filters. However, because the pixels of different channels (R, G, B) on a Bayer color sensor are not at the same physical location, conventional demosaicing techniques generate color artifacts in holographic imaging using simultaneous multi-wavelength illumination. Here we demonstrate that pixel super-resolution can be merged into the color de-multiplexing process to significantly suppress the artifacts in wavelength-multiplexed holographic color imaging. This new approach, termed Demosaiced Pixel Super-Resolution (D-PSR), generates color images that are similar in performance to sequential illumination at three wavelengths, and therefore improves the speed of holographic color imaging by 3-fold. D-PSR method is broadly applicable to holographic microscopy applications, where high-resolution imaging and multi-wavelength illumination are desired.
机译:为了合成全息彩色图像,人们可以依次拍摄三个不同波长的全息图,例如在光谱的红色(R),绿色(G)和蓝色(B)处进行数字合并。为了将成像过程加快三倍,还可以使用拜耳彩色传感器芯片对三个波长进行多路分解,这些波长同时照射样品并使用拜耳彩色滤光片的已知透射光谱以数字方式检索全息图的单独集合。但是,由于拜耳色彩传感器上不同通道(R,G,B)的像素不在同一物理位置,因此传统的去马赛克技术会使用同时的多波长照明在全息成像中生成色彩伪影。在这里,我们证明像素超分辨率可以合并到颜色多路分解过程中,以显着抑制波长多路复用全息彩色成像中的伪像。这种称为去马赛克像素超分辨率(D-PSR)的新方法生成的彩色图像的性能与三种波长的顺序照明相似,因此将全息彩色成像的速度提高了3倍。 D-PSR方法广泛适用于需要高分辨率成像和多波长照明的全息显微镜应用。

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