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Sono-photoacoustic imaging of gold nanoemulsions: Part I. Exposure thresholds

Integrating high contrast bubbles from ultrasound imaging with plasmonic absorbers from photoacoustic imaging is investigated. Nanoemulsion beads coated with gold nanopsheres (NEB-GNS) are excited with simultaneous light (transient heat at the GNS's) and ultrasound (rarefactional pressure) resu...

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Autores principales: Arnal, Bastien, Perez, Camilo, Wei, Chen-Wei, Xia, Jinjun, Lombardo, Michael, Pelivanov, Ivan, Matula, Thomas J., Pozzo, Lilo D., O’Donnell, Matthew
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4398805/
https://www.ncbi.nlm.nih.gov/pubmed/25893169
http://dx.doi.org/10.1016/j.pacs.2014.12.001
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author Arnal, Bastien
Perez, Camilo
Wei, Chen-Wei
Xia, Jinjun
Lombardo, Michael
Pelivanov, Ivan
Matula, Thomas J.
Pozzo, Lilo D.
O’Donnell, Matthew
author_facet Arnal, Bastien
Perez, Camilo
Wei, Chen-Wei
Xia, Jinjun
Lombardo, Michael
Pelivanov, Ivan
Matula, Thomas J.
Pozzo, Lilo D.
O’Donnell, Matthew
author_sort Arnal, Bastien
collection PubMed
description Integrating high contrast bubbles from ultrasound imaging with plasmonic absorbers from photoacoustic imaging is investigated. Nanoemulsion beads coated with gold nanopsheres (NEB-GNS) are excited with simultaneous light (transient heat at the GNS's) and ultrasound (rarefactional pressure) resulting in a phase transition achievable under different scenarios, enhancing laser-induced acoustic signals and enabling specific detection of nanoprobes at lower concentration. An automated platform allowed dual parameter scans of both pressure and laser fluence while recording broadband acoustic signals. Two types of NEB-GNS and individual GNS were investigated and showed the great potential of this technique to enhance photoacoustic/acoustic signals. The NEB-GNS size distribution influences vaporization thresholds which can be reached at both permissible ultrasound and light exposures at deep penetration and at low concentrations of targets. This technique, called sono-photoacoustics, has great potential for targeted molecular imaging and therapy using compact nanoprobes with potentially high-penetrability into tissue.
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spelling pubmed-43988052015-04-17 Sono-photoacoustic imaging of gold nanoemulsions: Part I. Exposure thresholds Arnal, Bastien Perez, Camilo Wei, Chen-Wei Xia, Jinjun Lombardo, Michael Pelivanov, Ivan Matula, Thomas J. Pozzo, Lilo D. O’Donnell, Matthew Photoacoustics Special Issue: Contrast Agents for optoacoustic imaging and sensing: Design and biomedical applications; Edited by Alexander Oraevsky, Matthew O’Donnell and Silvio Aime Integrating high contrast bubbles from ultrasound imaging with plasmonic absorbers from photoacoustic imaging is investigated. Nanoemulsion beads coated with gold nanopsheres (NEB-GNS) are excited with simultaneous light (transient heat at the GNS's) and ultrasound (rarefactional pressure) resulting in a phase transition achievable under different scenarios, enhancing laser-induced acoustic signals and enabling specific detection of nanoprobes at lower concentration. An automated platform allowed dual parameter scans of both pressure and laser fluence while recording broadband acoustic signals. Two types of NEB-GNS and individual GNS were investigated and showed the great potential of this technique to enhance photoacoustic/acoustic signals. The NEB-GNS size distribution influences vaporization thresholds which can be reached at both permissible ultrasound and light exposures at deep penetration and at low concentrations of targets. This technique, called sono-photoacoustics, has great potential for targeted molecular imaging and therapy using compact nanoprobes with potentially high-penetrability into tissue. Elsevier 2015-01-02 /pmc/articles/PMC4398805/ /pubmed/25893169 http://dx.doi.org/10.1016/j.pacs.2014.12.001 Text en http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Special Issue: Contrast Agents for optoacoustic imaging and sensing: Design and biomedical applications; Edited by Alexander Oraevsky, Matthew O’Donnell and Silvio Aime
Arnal, Bastien
Perez, Camilo
Wei, Chen-Wei
Xia, Jinjun
Lombardo, Michael
Pelivanov, Ivan
Matula, Thomas J.
Pozzo, Lilo D.
O’Donnell, Matthew
Sono-photoacoustic imaging of gold nanoemulsions: Part I. Exposure thresholds
title Sono-photoacoustic imaging of gold nanoemulsions: Part I. Exposure thresholds
title_full Sono-photoacoustic imaging of gold nanoemulsions: Part I. Exposure thresholds
title_fullStr Sono-photoacoustic imaging of gold nanoemulsions: Part I. Exposure thresholds
title_full_unstemmed Sono-photoacoustic imaging of gold nanoemulsions: Part I. Exposure thresholds
title_short Sono-photoacoustic imaging of gold nanoemulsions: Part I. Exposure thresholds
title_sort sono-photoacoustic imaging of gold nanoemulsions: part i. exposure thresholds
topic Special Issue: Contrast Agents for optoacoustic imaging and sensing: Design and biomedical applications; Edited by Alexander Oraevsky, Matthew O’Donnell and Silvio Aime
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4398805/
https://www.ncbi.nlm.nih.gov/pubmed/25893169
http://dx.doi.org/10.1016/j.pacs.2014.12.001
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