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首页> 外文期刊>Journal of optics >Color Fourier ptychographic microscopy based on symmetrical illumination and wavelength multiplexing
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Color Fourier ptychographic microscopy based on symmetrical illumination and wavelength multiplexing

机译:基于对称照明和波长复用的彩色傅里叶PTYCHOGURIC显微镜

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摘要

Fourier ptychographic microscopy (FPM), by using a LED array as its light source and each LED being lit up sequentially, can recover a high resolution (HR) and large field of view image from a sequence of low resolution (LR) images. It is difficult to obtain a perfect high resolution color image by a monochrome camera because of non-overlapping focal planes of different color channels resulting from the residual chromatic aberration of the microscopic objective. In this paper, a kind of method, based on symmetrical LED illumination and wavelength multiplexing, is applied in a FPM system to collect LR images and recover HR color images. Compared with single LED illumination, symmetrical illumination has higher defocus tolerance. It is proven by simulated and experimental results that higher-quality HR color images can be obtained based on wavelength multiplexing and symmetrical illumination by a monochrome camera when defocus or chromatic aberration exist. It is demonstrated that symmetrical illumination is helpful in chromatic aberration correction in color FPM imaging.
机译:傅里叶PTychographic显微镜(FPM),通过使用LED阵列作为其光源并且每个LED依次点亮,可以从一系列低分辨率(LR)图像的序列中恢复高分辨率(HR)和大视野。由于来自微观物镜的残余色差导致的不同颜色通道的非重叠焦平,难以通过单色相机获得完美的高分辨率彩色图像。本文基于对称LED照明和波长复用的方法应用于FPM系统中以收集LR图像并恢复HR彩色图像。与单个LED照明相比,对称照明具有更高的散焦耐受性。通过模拟和实验结果证明,当存在散焦或色差时,通过单色相机可以基于波长复用和对称照射来获得更高质量的HR彩色图像。证明对称照明在彩色FPM成像中有助于色差校正。

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