Single-Shot Through-Focus Image Acquisition and Phase Retrieval From Chromatic Aberration and Multi-Angle Illumination

Phase recovery from a stack of through-focus intensity images is an effective non-interference quantitative phase imaging strategy. Nevertheless, the implementations of these methods are expensive and time-consuming because the distance between each through-focus plane has to be guaranteed by precis...

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Main Authors: Guocheng Zhou, Shaohui Zhang, Yayu Zhai, Yao Hu, Qun Hao
Format: Article
Language:English
Published: Frontiers Media S.A. 2021-04-01
Series:Frontiers in Physics
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fphy.2021.648827/full
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spelling doaj-674604ad06cc4529a6726dba44a467952021-04-29T08:29:47ZengFrontiers Media S.A.Frontiers in Physics2296-424X2021-04-01910.3389/fphy.2021.648827648827Single-Shot Through-Focus Image Acquisition and Phase Retrieval From Chromatic Aberration and Multi-Angle IlluminationGuocheng Zhou0Shaohui Zhang1Yayu Zhai2Yao Hu3Qun Hao4School of Optics and Photonics, Beijing Institute of Technology, Beijing, ChinaSchool of Optics and Photonics, Beijing Institute of Technology, Beijing, ChinaResearch Center of Ship Quality and Reliability, China Institute of Marine Technology and Economy, Beijing, ChinaSchool of Optics and Photonics, Beijing Institute of Technology, Beijing, ChinaSchool of Optics and Photonics, Beijing Institute of Technology, Beijing, ChinaPhase recovery from a stack of through-focus intensity images is an effective non-interference quantitative phase imaging strategy. Nevertheless, the implementations of these methods are expensive and time-consuming because the distance between each through-focus plane has to be guaranteed by precision mechanical moving devices, and the multiple images must be acquired sequentially. In this article, we propose a single-shot through-focus intensity image stack acquisition strategy without any precision movement. Isolated LED units are used to illuminate the sample in different colors from different angles. Due to the chromatic aberration characteristics of the objective, the color-channel defocus images on the theoretical imaging plane are mutually laterally shifted. By calculating the shift amount of each sub-image area in each color channel, the distances between each through-focus image can be obtained, which is a critical parameter in transport of intensity equation (TIE) and alternating projection (AP). Lastly, AP is used to recover the phase distribution and realize the 3D localization of different defocus distances of the sample under test as an example. Both simulation and experiments are conducted to verify the feasibility of the proposed method.https://www.frontiersin.org/articles/10.3389/fphy.2021.648827/fullphase retrievalalternating projectionchromatic aberrationsingle-shotcomputational imagingmicroscopy
collection DOAJ
language English
format Article
sources DOAJ
author Guocheng Zhou
Shaohui Zhang
Yayu Zhai
Yao Hu
Qun Hao
spellingShingle Guocheng Zhou
Shaohui Zhang
Yayu Zhai
Yao Hu
Qun Hao
Single-Shot Through-Focus Image Acquisition and Phase Retrieval From Chromatic Aberration and Multi-Angle Illumination
Frontiers in Physics
phase retrieval
alternating projection
chromatic aberration
single-shot
computational imaging
microscopy
author_facet Guocheng Zhou
Shaohui Zhang
Yayu Zhai
Yao Hu
Qun Hao
author_sort Guocheng Zhou
title Single-Shot Through-Focus Image Acquisition and Phase Retrieval From Chromatic Aberration and Multi-Angle Illumination
title_short Single-Shot Through-Focus Image Acquisition and Phase Retrieval From Chromatic Aberration and Multi-Angle Illumination
title_full Single-Shot Through-Focus Image Acquisition and Phase Retrieval From Chromatic Aberration and Multi-Angle Illumination
title_fullStr Single-Shot Through-Focus Image Acquisition and Phase Retrieval From Chromatic Aberration and Multi-Angle Illumination
title_full_unstemmed Single-Shot Through-Focus Image Acquisition and Phase Retrieval From Chromatic Aberration and Multi-Angle Illumination
title_sort single-shot through-focus image acquisition and phase retrieval from chromatic aberration and multi-angle illumination
publisher Frontiers Media S.A.
series Frontiers in Physics
issn 2296-424X
publishDate 2021-04-01
description Phase recovery from a stack of through-focus intensity images is an effective non-interference quantitative phase imaging strategy. Nevertheless, the implementations of these methods are expensive and time-consuming because the distance between each through-focus plane has to be guaranteed by precision mechanical moving devices, and the multiple images must be acquired sequentially. In this article, we propose a single-shot through-focus intensity image stack acquisition strategy without any precision movement. Isolated LED units are used to illuminate the sample in different colors from different angles. Due to the chromatic aberration characteristics of the objective, the color-channel defocus images on the theoretical imaging plane are mutually laterally shifted. By calculating the shift amount of each sub-image area in each color channel, the distances between each through-focus image can be obtained, which is a critical parameter in transport of intensity equation (TIE) and alternating projection (AP). Lastly, AP is used to recover the phase distribution and realize the 3D localization of different defocus distances of the sample under test as an example. Both simulation and experiments are conducted to verify the feasibility of the proposed method.
topic phase retrieval
alternating projection
chromatic aberration
single-shot
computational imaging
microscopy
url https://www.frontiersin.org/articles/10.3389/fphy.2021.648827/full
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