The accumulation of 1–10 μm phospholipid-shelled microbubbles was demonstrated by creating an “ultrasonic tap” using acoustic travelling waves. Microbubbles were flowed through a 200 μm cellulose tube at rates ranging between 14–50 ml/h, in order to approximate the velocities and wall shear rates found throughout the human circulatory system. The generated acoustic radiation force directly opposing the flow direction was sufficient to hold microbubbles in a fluid flow up to 28 cm/s. Clusters of microbubbles subject to wall shear rates of up to 9000 s−1 were retained near a pressure null for several seconds
Ultrasound-driven microbubbles have been used in therapeutic applications to deliver drugs across ca...
Mechanical effects of microbubbles on tissues are central to many emerging ultrasound applications. ...
AbstractIt has been suggested that cavitation microstreaming plays a role in the therapeutic action ...
Mechanisms for non-invasive target drug delivery using microbubbles and ultrasound have attracted gr...
Microbubble (MB) volumetric pulsations can be selectively seeded with external ultrasonic fields. Th...
The capability of accumulating microbubbles using ultrasound, could be beneficial for enhancing targ...
Previous studies have shown that thrombi, which may completely block the blood flow in a vessel, can...
Acoustic radiation force has become a significant factor in the research to enhance the targeting of...
Ultrasonic theranostics using echogenic bubbles allow real-time traceability and site-specific, on d...
Thesis (Ph.D.)--University of Washington, 2018Ultrasound contrast agents are micron-sized bubbles th...
Graduation date: 2012In an effort to develop an optical-acoustical understanding of ultrasound contr...
International audiencePurpose: Ultrasound contrast agents consist of bubbles in the micrometer range...
Ultrasound and microbubble induced blood-brain barrier opening has shown success in clinical trials ...
Mechanical effects of microbubbles on tissues are central to many emerging ultrasound applications. ...
In therapeutic ultrasound using microbubbles, it is essential to drive the microbubbles into the cor...
Ultrasound-driven microbubbles have been used in therapeutic applications to deliver drugs across ca...
Mechanical effects of microbubbles on tissues are central to many emerging ultrasound applications. ...
AbstractIt has been suggested that cavitation microstreaming plays a role in the therapeutic action ...
Mechanisms for non-invasive target drug delivery using microbubbles and ultrasound have attracted gr...
Microbubble (MB) volumetric pulsations can be selectively seeded with external ultrasonic fields. Th...
The capability of accumulating microbubbles using ultrasound, could be beneficial for enhancing targ...
Previous studies have shown that thrombi, which may completely block the blood flow in a vessel, can...
Acoustic radiation force has become a significant factor in the research to enhance the targeting of...
Ultrasonic theranostics using echogenic bubbles allow real-time traceability and site-specific, on d...
Thesis (Ph.D.)--University of Washington, 2018Ultrasound contrast agents are micron-sized bubbles th...
Graduation date: 2012In an effort to develop an optical-acoustical understanding of ultrasound contr...
International audiencePurpose: Ultrasound contrast agents consist of bubbles in the micrometer range...
Ultrasound and microbubble induced blood-brain barrier opening has shown success in clinical trials ...
Mechanical effects of microbubbles on tissues are central to many emerging ultrasound applications. ...
In therapeutic ultrasound using microbubbles, it is essential to drive the microbubbles into the cor...
Ultrasound-driven microbubbles have been used in therapeutic applications to deliver drugs across ca...
Mechanical effects of microbubbles on tissues are central to many emerging ultrasound applications. ...
AbstractIt has been suggested that cavitation microstreaming plays a role in the therapeutic action ...