A multimodal instrument for real-time in situ study of ultrasound and cavitation mediated drug delivery

The development of a multimodal instrument capable of real-time in situ measurements of cavitation activity and effect in tissue mimicking phantoms during ultrasound and cavitation mediated drug delivery experiments is described here. The instrument features an acoustic arm that can expose phantoms...

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Main Authors: Bian, S, Seth, A, Daly, D, Carlisle, R, Stride, E
格式: Journal article
語言:English
出版: AIP Publishing 2017
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author Bian, S
Seth, A
Daly, D
Carlisle, R
Stride, E
author_facet Bian, S
Seth, A
Daly, D
Carlisle, R
Stride, E
author_sort Bian, S
collection OXFORD
description The development of a multimodal instrument capable of real-time in situ measurements of cavitation activity and effect in tissue mimicking phantoms during ultrasound and cavitation mediated drug delivery experiments is described here. The instrument features an acoustic arm that can expose phantoms to high-intensity focused-ultrasound while measuring cavitation activity and an optical arm that monitors cavitation effect using confocal microscopy. This combination of modalities allows real-time in situ characterisation of drug delivery in tissue and tissue mimicking phantoms during ultrasound and cavitation mediated drug delivery experiments. A representative result, obtained with a tissue mimicking phantom and acoustically activated droplets, is presented here as a demonstration of the instrument’s capabilities and potential applications.
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spelling oxford-uuid:f57ff4b6-a3c1-4df4-9c25-e9a83537ed9d2022-03-27T12:27:45ZA multimodal instrument for real-time in situ study of ultrasound and cavitation mediated drug deliveryJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:f57ff4b6-a3c1-4df4-9c25-e9a83537ed9dEnglishSymplectic Elements at OxfordAIP Publishing2017Bian, SSeth, ADaly, DCarlisle, RStride, EThe development of a multimodal instrument capable of real-time in situ measurements of cavitation activity and effect in tissue mimicking phantoms during ultrasound and cavitation mediated drug delivery experiments is described here. The instrument features an acoustic arm that can expose phantoms to high-intensity focused-ultrasound while measuring cavitation activity and an optical arm that monitors cavitation effect using confocal microscopy. This combination of modalities allows real-time in situ characterisation of drug delivery in tissue and tissue mimicking phantoms during ultrasound and cavitation mediated drug delivery experiments. A representative result, obtained with a tissue mimicking phantom and acoustically activated droplets, is presented here as a demonstration of the instrument’s capabilities and potential applications.
spellingShingle Bian, S
Seth, A
Daly, D
Carlisle, R
Stride, E
A multimodal instrument for real-time in situ study of ultrasound and cavitation mediated drug delivery
title A multimodal instrument for real-time in situ study of ultrasound and cavitation mediated drug delivery
title_full A multimodal instrument for real-time in situ study of ultrasound and cavitation mediated drug delivery
title_fullStr A multimodal instrument for real-time in situ study of ultrasound and cavitation mediated drug delivery
title_full_unstemmed A multimodal instrument for real-time in situ study of ultrasound and cavitation mediated drug delivery
title_short A multimodal instrument for real-time in situ study of ultrasound and cavitation mediated drug delivery
title_sort multimodal instrument for real time in situ study of ultrasound and cavitation mediated drug delivery
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