溶栓
传感器
空化
超声波
溶栓药
生物医学工程
微气泡
超声波传感器
医学
导管
材料科学
声学
心脏病学
放射科
心肌梗塞
物理
作者
Jinwook Kim,Brooks D. Lindsey,Wei-Yi Chang,Xuming Dai,Joseph Stavas,Paul A. Dayton,Xiaoning Jiang
标识
DOI:10.1038/s41598-017-03492-4
摘要
Abstract Effective removal or dissolution of large blood clots remains a challenge in clinical treatment of acute thrombo-occlusive diseases. Here we report the development of an intravascular microbubble-mediated sonothrombolysis device for improving thrombolytic rate and thus minimizing the required dose of thrombolytic drugs. We hypothesize that a sub-megahertz, forward-looking ultrasound transducer with an integrated microbubble injection tube is more advantageous for efficient thrombolysis by enhancing cavitation-induced microstreaming than the conventional high-frequency, side-looking, catheter-mounted transducers. We developed custom miniaturized transducers and demonstrated that these transducers are able to generate sufficient pressure to induce cavitation of lipid-shelled microbubble contrast agents. Our technology demonstrates a thrombolysis rate of 0.7 ± 0.15 percent mass loss/min in vitro without any use of thrombolytic drugs.
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