Fourier ptychographic microscopy with multi-height illumination based on energy threshold pre-search.

IF 1.4 3区 物理与天体物理 Q3 OPTICS
Hong Cheng, Qihong Liu, Yu Chen, Hanpin Ju, Chuan Shen
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引用次数: 0

Abstract

Fourier ptychographic microscopy (FPM) technology combines the concepts of synthetic aperture imaging, ptychography, and phase retrieval to address the contradiction between the large field of view and high resolution in traditional microscopy and can achieve high-resolution amplitude and phase images with a large field of view. However, for most samples, the primary information is concentrated in the low-frequency region, and traditional single-height FPM may suffer from insufficient sampling, leading to low reconstruction accuracy. In addition, the reconstruction process typically requires a large number of low-resolution images, which also significantly reduces the reconstruction efficiency. To overcome these issues, this paper proposes a form of FPM with multi-height illumination based on an energy threshold pre-search. This method simply involves moving the LED array to three planes for multi-height sample illumination on the traditional FPM hardware, thus improving the sampling conditions and enhancing the reconstruction accuracy. The low-resolution images acquired in this way are then screened using an energy threshold method to select images with higher energy, and a phase retrieval method is employed to reconstruct high-resolution complex amplitude images. The results of simulations and experiments demonstrate that compared to traditional methods, our approach not only improves the reconstruction accuracy but also reduces the number of low-resolution images by at least approximately 60%, thereby significantly enhancing the reconstruction efficiency.

傅立叶分层显微技术(FPM)结合了合成孔径成像、分层成像和相位检索的概念,解决了传统显微技术中大视场和高分辨率之间的矛盾,可以在大视场下获得高分辨率的振幅和相位图像。然而,对于大多数样本来说,主要信息都集中在低频区域,传统的单高 FPM 可能存在采样不足的问题,导致重建精度较低。此外,重建过程通常需要大量低分辨率图像,这也大大降低了重建效率。为了克服这些问题,本文提出了一种基于能量阈值预搜索的多高度照明 FPM。这种方法只需在传统 FPM 硬件上将 LED 阵列移动到三个平面,即可实现多高度样本照明,从而改善了采样条件,提高了重建精度。然后使用能量阈值法筛选以这种方式获取的低分辨率图像,选择能量较高的图像,并采用相位检索法重建高分辨率复振幅图像。模拟和实验结果表明,与传统方法相比,我们的方法不仅提高了重建精度,还减少了至少约 60% 的低分辨率图像,从而显著提高了重建效率。
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来源期刊
CiteScore
3.40
自引率
10.50%
发文量
417
审稿时长
3 months
期刊介绍: The Journal of the Optical Society of America A (JOSA A) is devoted to developments in any field of classical optics, image science, and vision. JOSA A includes original peer-reviewed papers on such topics as: * Atmospheric optics * Clinical vision * Coherence and Statistical Optics * Color * Diffraction and gratings * Image processing * Machine vision * Physiological optics * Polarization * Scattering * Signal processing * Thin films * Visual optics Also: j opt soc am a.
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