Plug-and-play DPC-based quantitative phase microscope

Author:

Peng Tao1ORCID,Ke Zeyu1,Wu Hao1,He Jun1,Sun Yue1,Zhang Shuhe1ORCID,Gao Qian1,Shao Meng2,Zhang Shengzhao1,Zhong Zhensheng1ORCID,Lu FengYa1,Zhou Jinhua1ORCID

Affiliation:

1. Anhui Medical University

2. Hefei University of Technology

Abstract

Point-of-care testing (POCT) plays an increasingly important role in biomedical research and health care. Quantitative phase microscopes (QPMs) with good contrast, no invasion, no labeling, high speed and automation could be effectively applied for POCT. However, most QPMs are fixed on the optical platform with bulky size, lack of timeliness, which remained challenging in POCT solutions. In this paper, we proposed a plug-and-play QPM with multimode imaging based on the quantitative differential phase contrast (qDPC) method. The system employs a programmable LED array as the light source and uses the GPU to accelerate the calculation, which can realize multi-contrast imaging with six modes. Accurate phase measurement and real-time phase imaging are implemented by the proposed qDPC algorithms for quantitative phase targets and biomedical samples. A 3D electric control platform is designed for mechanical control of field of view and focusing without manual operations. The experimental results verify the robustness and high performance of the setup. Even a rookie could finish the POCT scheme for biomedical applications at the scene using the QPM with a compact size of 140 × 165 × 250 mm3.

Funder

Key Research and Development Program of Anhui Province

Natural Science Foundation of Anhui Province

Research Fund of Anhui Institute of Translational Medicine

Key Scientific Research Foundation of Education Department of Anhui Province

Open Research Topics of Anhui Provincial Engineering Technology Research Center for Biomedical Optical Instrument

Publisher

Optica Publishing Group

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