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A multi-pillar piezoelectric stack transducer for nanodroplet mediated intravascular sonothrombolysis

Authors
Kim, HowukKim, JinwookWu, HuaiyuZhang, BohuaDayton, Paul A.Jiang, Xiaoning a Send mail to Jiang X. Save all to author list
Issue Date
Sep-2021
Publisher
Elsevier BV
Keywords
Intravascular transducer; Nanodroplet; Piezoelectric stack; Small aperture; Sonothrombolysis
Citation
Ultrasonics, v.116, pp 1 - 11
Pages
11
Indexed
SCIE
SCOPUS
Journal Title
Ultrasonics
Volume
116
Start Page
1
End Page
11
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/120586
DOI
10.1016/j.ultras.2021.106520
ISSN
0041-624X
1874-9968
Abstract
We aim to develop a nanodroplet (ND)-mediated intravascular ultrasound (US) transducer for deep vein thrombosis treatments. The US device, having an efficient forward directivity of the acoustic beam, is capable of expediting the clot dissolution rate by activating cavitation of NDs injected onto a thrombus. We designed and prototyped a multi-pillar piezoelectric stack (MPPS) transducer composed of four piezoelectric stacks. Each stack was made of five layers of PZT-4 plates, having a dimension of 0.85 × 0.85 × 0.2 mm3. The transducer was characterized by measuring the electrical impedance and acoustic pressure, compared to simulation results. Next, in-vitro tests were conducted in a blood flow mimicking system using the transducer equipped with an ND injecting tube. The miniaturized transducer, having an aperture size of 2.8 mm, provided a high mechanical index of 1.52 and a relatively wide focal zone of 3.4 mm at 80 Vpp, 0.96 MHz electric input. The mass-reduction rate of the proposed method (NDs + US) was assessed to be 4.1 and 4.6 mg/min with and without the flow model, respectively. The rate was higher than that (1.3–2.7 mg/min) of other intravascular ultrasound modalities using micron-sized bubble agents. The ND-mediated intravascular sonothrombolysis using MPPS transducers was demonstrated with an unprecedented lysis rate, which may offer a new clinical option for DVT treatments. The MPPS transducer generated a high acoustic pressure (~3.1 MPa) at a distance of approximately 2.2 wavelengths from the small aperture, providing synergistic efficacy with nanodroplets for thrombolysis without thrombolytic agents. © 2021
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COLLEGE OF ENGINEERING SCIENCES > DEPARTMENT OF MECHANICAL ENGINEERING > 1. Journal Articles

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