Literature DB >> 24569249

An IVUS transducer for microbubble therapies.

Joseph P Kilroy, Abhay V Patil, Joshua J Rychak, John A Hossack.   

Abstract

There is interest in examining the potential of modified intravascular ultrasound (IVUS) catheters to facilitate dual diagnostic and therapeutic roles using ultrasound plus microbubbles for localized drug delivery to the vessel wall. The goal of this study was to design, prototype, and validate an IVUS transducer for microbubble-based drug delivery. A 1-D acoustic radiation force model and finite element analysis guided the design of a 1.5-MHz IVUS transducer. Using the IVUS transducer, biotinylated microbubbles were displaced in water and bovine whole blood to the streptavidin-coated wall of a flow phantom by a 1.5-MHz center frequency, peak negative pressure = 70 kPa pulse with varying pulse repetition frequency (PRF) while monitoring microbubble adhesion with ultrasound. A fit was applied to the RF data to extract a time constant (τ). As PRF was increased in water, the time constant decreased (τ = 32.6 s, 1 kHz vs. τ = 8.2 s, 6 kHz), whereas in bovine whole blood an adhesion-no adhesion transition was found for PRFs ≥ 8 kHz. Finally, a fluorophore was delivered to an ex vivo swine artery using microbubbles and the IVUS transducer, resulting in a 6.6-fold increase in fluorescence. These results indicate the importance of PRF (or duty factor) for IVUS acoustic radiation force microbubble displacement and the potential for IVUS and microbubbles to provide localized drug delivery.

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Year:  2014        PMID: 24569249      PMCID: PMC4136497          DOI: 10.1109/TUFFC.2014.2929

Source DB:  PubMed          Journal:  IEEE Trans Ultrason Ferroelectr Freq Control        ISSN: 0885-3010            Impact factor:   2.725


  43 in total

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  4 in total

1.  Reducing Neointima Formation in a Swine Model with IVUS and Sirolimus Microbubbles.

Authors:  Joseph P Kilroy; Ali H Dhanaliwala; Alexander L Klibanov; Douglas K Bowles; Brian R Wamhoff; John A Hossack
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2.  Contrast Enhanced Superharmonic Imaging for Acoustic Angiography Using Reduced Form-Factor Lateral Mode Transmitters for Intravascular and Intracavity Applications.

Authors:  Zhuochen Wang; K Heath Martin; Wenbin Huang; Paul A Dayton; Xiaoning Jiang
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3.  Localized in vivo model drug delivery with intravascular ultrasound and microbubbles.

Authors:  Joseph P Kilroy; Alexander L Klibanov; Brian R Wamhoff; Douglas K Bowles; John A Hossack
Journal:  Ultrasound Med Biol       Date:  2014-08-15       Impact factor: 2.998

4.  The Impact of Surface Drug Distribution on the Acoustic Behavior of DOX-Loaded Microbubbles.

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