Contactless manipulation of microparticles using acoustic waves holds promise for applications ranging from cell sorting to three-dimensional (3D) printing and tissue engineering. However, the unique potential of acoustic trapping to be applied in biomedical settings remains largely untapped. In particular, the main advantage of acoustic trapping over optical trapping, namely the ability of sound to propagate through thick and opaque media, has not yet been exploited in full. Here we demonstrate experimentally the use of the recently developed technique of single-beam acoustical tweezers to trap microbubbles, an important class of biomedically relevant microparticles. We show that the region of vanishing pressure of a propagating vortex bea...
The capability of accumulating microbubbles using ultrasound, could be beneficial for enhancing targ...
Ultrasound-triggered microbubble-assisted drug delivery is a promising tool for localized therapy. S...
The concept of a single-beam acoustical tweezer device which can simultaneously trap microparticles ...
Contactless manipulation of microparticles using acoustic waves holds promise for applications rangi...
The ability of surface acoustic waves to trap and manipulate micrometer-scale particles and biologic...
Acoustic tweezers facilitate the manipulation of objects using sound waves. With the current state o...
We demonstrate the trapping of elastic particles by the large gradient force of a single acoustical ...
We present a novel device for acoustically manipulating or sonotweezing micron-scale elements. Such ...
Encapsulated microbubbles, widely used as ultrasound contrast agents, exhibit acoustic emissions tha...
This paper reports a method to generate tunable bottle beams using an ultrasonic lens, by which the ...
Ultrasound-triggered microbubble-assisted drug delivery is a promising tool for localized therapy. S...
International audienceThe contactless collective or selective manipulation of microscopic objects is...
An electronically controlled acoustic tweezer was used to demonstrate two acoustic manipulation phen...
We show that Bessel-function acoustic pressure fields can be used to trap and controllably position ...
Mechanisms for non-invasive target drug delivery using microbubbles and ultrasound have attracted gr...
The capability of accumulating microbubbles using ultrasound, could be beneficial for enhancing targ...
Ultrasound-triggered microbubble-assisted drug delivery is a promising tool for localized therapy. S...
The concept of a single-beam acoustical tweezer device which can simultaneously trap microparticles ...
Contactless manipulation of microparticles using acoustic waves holds promise for applications rangi...
The ability of surface acoustic waves to trap and manipulate micrometer-scale particles and biologic...
Acoustic tweezers facilitate the manipulation of objects using sound waves. With the current state o...
We demonstrate the trapping of elastic particles by the large gradient force of a single acoustical ...
We present a novel device for acoustically manipulating or sonotweezing micron-scale elements. Such ...
Encapsulated microbubbles, widely used as ultrasound contrast agents, exhibit acoustic emissions tha...
This paper reports a method to generate tunable bottle beams using an ultrasonic lens, by which the ...
Ultrasound-triggered microbubble-assisted drug delivery is a promising tool for localized therapy. S...
International audienceThe contactless collective or selective manipulation of microscopic objects is...
An electronically controlled acoustic tweezer was used to demonstrate two acoustic manipulation phen...
We show that Bessel-function acoustic pressure fields can be used to trap and controllably position ...
Mechanisms for non-invasive target drug delivery using microbubbles and ultrasound have attracted gr...
The capability of accumulating microbubbles using ultrasound, could be beneficial for enhancing targ...
Ultrasound-triggered microbubble-assisted drug delivery is a promising tool for localized therapy. S...
The concept of a single-beam acoustical tweezer device which can simultaneously trap microparticles ...