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Quadruple ultrasound, photoacoustic, optical coherence, and fluorescence fusion imaging with a transparent ultrasound transducer

Ultrasound and optical imagers are used widely in a variety of biological and medical applications. In particular, multimodal implementations combining light and sound have been actively investigated to improve imaging quality. However, the integration of optical sensors with opaque ultrasound trans...

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Autores principales: Park, Jeongwoo, Park, Byullee, Kim, Tae Yeong, Jung, Sungjin, Choi, Woo June, Ahn, Joongho, Yoon, Dong Hee, Kim, Jeongho, Jeon, Seungwan, Lee, Donghyun, Yong, Uijung, Jang, Jinah, Kim, Won Jong, Kim, Hong Kyun, Jeong, Unyong, Kim, Hyung Ham, Kim, Chulhong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7980418/
https://www.ncbi.nlm.nih.gov/pubmed/33836558
http://dx.doi.org/10.1073/pnas.1920879118
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author Park, Jeongwoo
Park, Byullee
Kim, Tae Yeong
Jung, Sungjin
Choi, Woo June
Ahn, Joongho
Yoon, Dong Hee
Kim, Jeongho
Jeon, Seungwan
Lee, Donghyun
Yong, Uijung
Jang, Jinah
Kim, Won Jong
Kim, Hong Kyun
Jeong, Unyong
Kim, Hyung Ham
Kim, Chulhong
author_facet Park, Jeongwoo
Park, Byullee
Kim, Tae Yeong
Jung, Sungjin
Choi, Woo June
Ahn, Joongho
Yoon, Dong Hee
Kim, Jeongho
Jeon, Seungwan
Lee, Donghyun
Yong, Uijung
Jang, Jinah
Kim, Won Jong
Kim, Hong Kyun
Jeong, Unyong
Kim, Hyung Ham
Kim, Chulhong
author_sort Park, Jeongwoo
collection PubMed
description Ultrasound and optical imagers are used widely in a variety of biological and medical applications. In particular, multimodal implementations combining light and sound have been actively investigated to improve imaging quality. However, the integration of optical sensors with opaque ultrasound transducers suffers from low signal-to-noise ratios, high complexity, and bulky form factors, significantly limiting its applications. Here, we demonstrate a quadruple fusion imaging system using a spherically focused transparent ultrasound transducer that enables seamless integration of ultrasound imaging with photoacoustic imaging, optical coherence tomography, and fluorescence imaging. As a first application, we comprehensively monitored multiparametric responses to chemical and suture injuries in rats’ eyes in vivo, such as corneal neovascularization, structural changes, cataracts, and inflammation. As a second application, we successfully performed multimodal imaging of tumors in vivo, visualizing melanomas without using labels and visualizing 4T1 mammary carcinomas using PEGylated gold nanorods. We strongly believe that the seamlessly integrated multimodal system can be used not only in ophthalmology and oncology but also in other healthcare applications with broad impact and interest.
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spelling pubmed-79804182021-03-26 Quadruple ultrasound, photoacoustic, optical coherence, and fluorescence fusion imaging with a transparent ultrasound transducer Park, Jeongwoo Park, Byullee Kim, Tae Yeong Jung, Sungjin Choi, Woo June Ahn, Joongho Yoon, Dong Hee Kim, Jeongho Jeon, Seungwan Lee, Donghyun Yong, Uijung Jang, Jinah Kim, Won Jong Kim, Hong Kyun Jeong, Unyong Kim, Hyung Ham Kim, Chulhong Proc Natl Acad Sci U S A Physical Sciences Ultrasound and optical imagers are used widely in a variety of biological and medical applications. In particular, multimodal implementations combining light and sound have been actively investigated to improve imaging quality. However, the integration of optical sensors with opaque ultrasound transducers suffers from low signal-to-noise ratios, high complexity, and bulky form factors, significantly limiting its applications. Here, we demonstrate a quadruple fusion imaging system using a spherically focused transparent ultrasound transducer that enables seamless integration of ultrasound imaging with photoacoustic imaging, optical coherence tomography, and fluorescence imaging. As a first application, we comprehensively monitored multiparametric responses to chemical and suture injuries in rats’ eyes in vivo, such as corneal neovascularization, structural changes, cataracts, and inflammation. As a second application, we successfully performed multimodal imaging of tumors in vivo, visualizing melanomas without using labels and visualizing 4T1 mammary carcinomas using PEGylated gold nanorods. We strongly believe that the seamlessly integrated multimodal system can be used not only in ophthalmology and oncology but also in other healthcare applications with broad impact and interest. National Academy of Sciences 2021-03-16 2021-03-08 /pmc/articles/PMC7980418/ /pubmed/33836558 http://dx.doi.org/10.1073/pnas.1920879118 Text en https://creativecommons.org/licenses/by/4.0/This open access article is distributed under Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Physical Sciences
Park, Jeongwoo
Park, Byullee
Kim, Tae Yeong
Jung, Sungjin
Choi, Woo June
Ahn, Joongho
Yoon, Dong Hee
Kim, Jeongho
Jeon, Seungwan
Lee, Donghyun
Yong, Uijung
Jang, Jinah
Kim, Won Jong
Kim, Hong Kyun
Jeong, Unyong
Kim, Hyung Ham
Kim, Chulhong
Quadruple ultrasound, photoacoustic, optical coherence, and fluorescence fusion imaging with a transparent ultrasound transducer
title Quadruple ultrasound, photoacoustic, optical coherence, and fluorescence fusion imaging with a transparent ultrasound transducer
title_full Quadruple ultrasound, photoacoustic, optical coherence, and fluorescence fusion imaging with a transparent ultrasound transducer
title_fullStr Quadruple ultrasound, photoacoustic, optical coherence, and fluorescence fusion imaging with a transparent ultrasound transducer
title_full_unstemmed Quadruple ultrasound, photoacoustic, optical coherence, and fluorescence fusion imaging with a transparent ultrasound transducer
title_short Quadruple ultrasound, photoacoustic, optical coherence, and fluorescence fusion imaging with a transparent ultrasound transducer
title_sort quadruple ultrasound, photoacoustic, optical coherence, and fluorescence fusion imaging with a transparent ultrasound transducer
topic Physical Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7980418/
https://www.ncbi.nlm.nih.gov/pubmed/33836558
http://dx.doi.org/10.1073/pnas.1920879118
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