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单次拍摄共光路宽视场反射数字全息显微镜的活细胞成像。

Live Cell Imaging by Single-Shot Common-Path Wide Field-of-View Reflective Digital Holographic Microscope.

机构信息

Department of Systems Science, Graduate School of System Informatics, Kobe University, Rokkodai 1-1, Nada, Kobe 657-8501, Japan.

Center of Optical Scattering Image Science, Kobe University, Rokkodai 1-1, Nada, Kobe 657-8501, Japan.

出版信息

Sensors (Basel). 2024 Jan 23;24(3):720. doi: 10.3390/s24030720.

Abstract

Quantitative phase imaging by digital holographic microscopy (DHM) is a nondestructive and label-free technique that has been playing an indispensable role in the fields of science, technology, and biomedical imaging. The technique is competent in imaging and analyzing label-free living cells and investigating reflective surfaces. Herein, we introduce a new configuration of a wide field-of-view single-shot common-path off-axis reflective DHM for the quantitative phase imaging of biological cells that leverages several advantages, including being less-vibration sensitive to external perturbations due to its common-path configuration, also being compact in size, simple in optical design, highly stable, and cost-effective. A detailed description of the proposed DHM system, including its optical design, working principle, and capability for phase imaging, is presented. The applications of the proposed system are demonstrated through quantitative phase imaging results obtained from the reflective surface (USAF resolution test target) as well as transparent samples (living plant cells). The proposed system could find its applications in the investigation of several biological specimens and the optical metrology of micro-surfaces.

摘要

数字全息显微镜(DHM)的定量相位成像技术是一种非破坏性的、无标记的技术,在科学、技术和生物医学成像领域发挥了不可或缺的作用。该技术能够对无标记的活细胞进行成像和分析,并对反射表面进行研究。本文提出了一种新的宽视场单次共光路离轴反射 DHM 配置,用于生物细胞的定量相位成像,具有几个优点,包括由于共光路配置,对外部干扰的振动敏感性较低,同时尺寸紧凑、光学设计简单、高度稳定且具有成本效益。详细介绍了所提出的 DHM 系统,包括其光学设计、工作原理和相位成像能力。通过对反射表面(USAF 分辨率测试靶)和透明样品(活植物细胞)获得的定量相位成像结果,展示了该系统的应用。所提出的系统可以在研究几种生物样本和微表面的光学计量学方面得到应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/147f/10857047/7a9e873e3ed6/sensors-24-00720-g001.jpg

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