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Optical Fiber Bundle-Based High-Speed and Precise Micro-Scanning for Image High-Resolution Reconstruction

We propose an imaging method based on optical fiber bundle combined with micro-scanning technique for improving image quality without complex image reconstruction algorithms. In the proposed method, a piezoelectric-ceramic-chip is used as the micro-displacement driver of the optical fiber bundle, wh...

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Autores principales: Jiang, Jiali, Zhou, Xin, Liu, Jiaying, Pan, Likang, Pan, Ziting, Zou, Fan, Li, Ziqiang, Li, Feng, Ma, Xiaoyu, Geng, Chao, Zuo, Jing, Li, Xinyang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8747347/
https://www.ncbi.nlm.nih.gov/pubmed/35009670
http://dx.doi.org/10.3390/s22010127
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author Jiang, Jiali
Zhou, Xin
Liu, Jiaying
Pan, Likang
Pan, Ziting
Zou, Fan
Li, Ziqiang
Li, Feng
Ma, Xiaoyu
Geng, Chao
Zuo, Jing
Li, Xinyang
author_facet Jiang, Jiali
Zhou, Xin
Liu, Jiaying
Pan, Likang
Pan, Ziting
Zou, Fan
Li, Ziqiang
Li, Feng
Ma, Xiaoyu
Geng, Chao
Zuo, Jing
Li, Xinyang
author_sort Jiang, Jiali
collection PubMed
description We propose an imaging method based on optical fiber bundle combined with micro-scanning technique for improving image quality without complex image reconstruction algorithms. In the proposed method, a piezoelectric-ceramic-chip is used as the micro-displacement driver of the optical fiber bundle, which has the advantages of small volume, fast response speed and high precision. The corresponding displacement of the optical fiber bundle can be generated by precise voltage controlling. An optical fiber bundle with core/cladding diameter 4/80 μm and hexagonal arrangement is used to scan the 1951 USAF target. The scanning step is 1 μm, which is equivalent to the diffraction limit resolution of the optical system. The corresponding information is recorded at high speed through photo-detectors and a high-resolution image is obtained by image stitching processing. The minimum distinguishable stripe width of the proposed imaging technique with piezoelectric-ceramic-chip driven micro-scanning is approximately 2.1 μm, which is 1 time higher than that of direct imaging with a CCD camera whose pixel size is close to the fiber core size. The experimental results indicate that the optical fiber bundle combined with piezoelectric-ceramic-chip driven micro-scanning is a high-speed and high-precision technique for high-resolution imaging.
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spelling pubmed-87473472022-01-11 Optical Fiber Bundle-Based High-Speed and Precise Micro-Scanning for Image High-Resolution Reconstruction Jiang, Jiali Zhou, Xin Liu, Jiaying Pan, Likang Pan, Ziting Zou, Fan Li, Ziqiang Li, Feng Ma, Xiaoyu Geng, Chao Zuo, Jing Li, Xinyang Sensors (Basel) Article We propose an imaging method based on optical fiber bundle combined with micro-scanning technique for improving image quality without complex image reconstruction algorithms. In the proposed method, a piezoelectric-ceramic-chip is used as the micro-displacement driver of the optical fiber bundle, which has the advantages of small volume, fast response speed and high precision. The corresponding displacement of the optical fiber bundle can be generated by precise voltage controlling. An optical fiber bundle with core/cladding diameter 4/80 μm and hexagonal arrangement is used to scan the 1951 USAF target. The scanning step is 1 μm, which is equivalent to the diffraction limit resolution of the optical system. The corresponding information is recorded at high speed through photo-detectors and a high-resolution image is obtained by image stitching processing. The minimum distinguishable stripe width of the proposed imaging technique with piezoelectric-ceramic-chip driven micro-scanning is approximately 2.1 μm, which is 1 time higher than that of direct imaging with a CCD camera whose pixel size is close to the fiber core size. The experimental results indicate that the optical fiber bundle combined with piezoelectric-ceramic-chip driven micro-scanning is a high-speed and high-precision technique for high-resolution imaging. MDPI 2021-12-25 /pmc/articles/PMC8747347/ /pubmed/35009670 http://dx.doi.org/10.3390/s22010127 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jiang, Jiali
Zhou, Xin
Liu, Jiaying
Pan, Likang
Pan, Ziting
Zou, Fan
Li, Ziqiang
Li, Feng
Ma, Xiaoyu
Geng, Chao
Zuo, Jing
Li, Xinyang
Optical Fiber Bundle-Based High-Speed and Precise Micro-Scanning for Image High-Resolution Reconstruction
title Optical Fiber Bundle-Based High-Speed and Precise Micro-Scanning for Image High-Resolution Reconstruction
title_full Optical Fiber Bundle-Based High-Speed and Precise Micro-Scanning for Image High-Resolution Reconstruction
title_fullStr Optical Fiber Bundle-Based High-Speed and Precise Micro-Scanning for Image High-Resolution Reconstruction
title_full_unstemmed Optical Fiber Bundle-Based High-Speed and Precise Micro-Scanning for Image High-Resolution Reconstruction
title_short Optical Fiber Bundle-Based High-Speed and Precise Micro-Scanning for Image High-Resolution Reconstruction
title_sort optical fiber bundle-based high-speed and precise micro-scanning for image high-resolution reconstruction
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8747347/
https://www.ncbi.nlm.nih.gov/pubmed/35009670
http://dx.doi.org/10.3390/s22010127
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