Accurate quantitative phase imaging by differential phase contrast with partially coherent illumination: beyond weak object approximation

Author:

Fan Yao12ORCID,Sun Jiasong12ORCID,Shu Yefeng12ORCID,Zhang Zeyu12,Chen Qian12ORCID,Zuo Chao12ORCID

Affiliation:

1. Smart Computational Imaging Research Institute (SCIRI) of Nanjing University of Science and Technology

2. Nanjing University of Science and Technology

Abstract

Quantitative phase imaging (QPI) by differential phase contrast (DPC) with partially coherent illumination provides speckle-free imaging and lateral resolution beyond the coherent diffraction limit, demonstrating great potential in biomedical imaging applications. Generally, DPC employs weak object approximation to linearize the phase-to-intensity image formation, simplifying the solution to the phase retrieval as a two-dimensional deconvolution with the corresponding phase transfer function. Despite its widespread adoption, weak object approximation still lacks a precise and clear definition, suggesting that the accuracy of the QPI results, especially for samples with large phase values, is yet to be verified. In this paper, we analyze the weak object approximation condition quantitatively and explicitly give its strict definition that is applicable to arbitrary samples and illumination apertures. Furthermore, an iterative deconvolution QPI technique based on pseudo-weak object approximation is proposed to overcome the difficulty of applying DPC to large-phase samples without additional data acquisition. Experiments with standard microlens arrays and MCF-7 cells demonstrated that the proposed method can effectively extend DPC beyond weak object approximation to high-precision three-dimensional morphological characterization of large-phase technical and biological samples.

Funder

Key National Industrial Technology Cooperation Foundation of Jiangsu Province

Biomedical Competition Foundation of Jiangsu Province

National Major Scientific Instrument Development Project

Open Research Fund of Jiangsu Key Laboratory of Spectral Imaging and Intelligent Sense

Fundamental Research Funds for the Central Universities

Youth Foundation of Jiangsu Province

Leading Technology of Jiangsu Basic Research Plan

National Natural Science Foundation of China

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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