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Single-shot refractive index slice imaging using spectrally multiplexed optical transfer function reshaping

delete2023-04-11
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OA
AI
C
Chungha Lee
H
Hervé Hugonnet
J
Juyeon Park
M
Mahn Jae Lee
W
Weisun Park
Y
YongKeun Park *
DOI:10.1364/OE.485559delete
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Abstract

Abstract

En 中文
The refractive index (RI) of cells and tissues is crucial in pathophysiology as a noninvasive and quantitative imaging contrast. Although its measurements have been demon-strated using three-dimensional quantitative phase imaging methods, these methods often require bulky interferometric setups or multiple measurements, which limits the measurement sensitivity and speed. Here, we present a single-shot RI imaging method that visualizes the RI of the in-focus region of a sample. By exploiting spectral multiplexing and optical transfer function engineering, three color-coded intensity images of a sample with three optimized illuminations were simultaneously obtained in a single-shot measurement. The measured intensity images were then deconvoluted to obtain the RI image of the in-focus slice of the sample. As a proof of concept, a setup was built using Fresnel lenses and a liquid-crystal display. For validation purposes, we measured microspheres of known RI and cross-validated the results with simulated results. Various static and highly dynamic biological cells were imaged to demonstrate that the proposed method can conduct single-shot RI slice imaging of biological samples with subcellular resolution.
Keywords:
DIFFRACTION TOMOGRAPHY
CONTRAST
MICROSCOPY
CELLS
QUANTIFICATION
ILLUMINATION
RESOLUTION

Journal

Optics Express cover
Optics Express
IF:
3.3
Papers:
6.1W
Citations:
14.3W

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