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Embedded pupil function recovery for Fourier ptychographic microscopy

机译:嵌入式瞳孔功能恢复,用于傅立叶色谱分析

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摘要

We develop and test a pupil function determination algorithm, termed embedded pupil function recovery (EPRY), which can be incorporated into the Fourier ptychographic microscopy (FPM) algorithm and recover both the Fourier spectrum of sample and the pupil function of imaging system simultaneously. This EPRY-FPM algorithm eliminates the requirement of the previous FPM algorithm for a priori knowledge of the aberration in the imaging system to reconstruct a high quality image. We experimentally demonstrate the effectiveness of this algorithm by reconstructing high resolution, large field-of-view images of biological samples. We also illustrate that the pupil function we retrieve can be used to study the spatially varying aberration of a large field-of-view imaging system. We believe that this algorithm adds more flexibility to FPM and can be a powerful tool for the characterization of an imaging system’s aberration.
机译:我们开发并测试了一种称为嵌入瞳孔功能恢复(EPRY)的瞳孔功能确定算法,该算法可以并入傅里叶液相色谱显微镜(FPM)算法中,并同时恢复样本的傅里叶光谱和成像系统的瞳孔功能。该EPRY-FPM算法消除了对于成像系统中的像差的先验知识的先前FPM算法的需求,以重建高质量图像。我们通过重建高分辨率,大视野的生物样本图像,实验性地证明了该算法的有效性。我们还说明,我们检索到的瞳孔函数可用于研究大型视野成像系统的空间变化像差。我们相信,该算法为FPM增加了更多灵活性,并且可以成为表征成像系统像差的强大工具。

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