An ultrasonic device for micro-patterning and precision manipulation of micrometre-scale particles is demonstrated. The device is formed using eight piezoelectric transducers shaped into an octagonal cavity. By exciting combinations of transducers simultaneously, with a controlled phase delay between them, different acoustic landscapes can be created, patterning micro-particles into lines, squares, and more complex shapes. When operated with all eight transducers the device can, with appropriate phase control, manipulate the two dimensional acoustic pressure gradient; it thus has the ability to position and translate a single tweezing zone to different locations on a surface in a precise and programmable manner
Ultrasonic standing wave manipulation has been proved to be a simple, robust technology to be integr...
We show that Bessel-function acoustic pressure fields can be used to trap and controllably position ...
Controlling the relative positions and coalescence of independent cells or microparticles is of part...
An ultrasonic device for micro-patterning and precision manipulation of micrometre-scale particles i...
An ultrasonic device for micro-patterning and precision manipulation of micrometre-scale particles i...
We present a novel device for acoustically manipulating or sonotweezing micron-scale elements. Such ...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
Ultrasonic particle manipulation tools have many promising applications in life sciences, expanding ...
Ultrasonic particle manipulation tools have many promising applications in life sciences, expanding ...
We describe the construction of a ultrasonic device suitable for micro patterning particles and cell...
Contact-free handling and control of particles using the optical, magnetic, acoustic, and electrical...
Ultrasonic standing wave manipulation has been proved to be a simple, robust technology to be integr...
Ultrasonic standing wave manipulation has been proved to be a simple, robust technology to be integr...
We show that Bessel-function acoustic pressure fields can be used to trap and controllably position ...
Controlling the relative positions and coalescence of independent cells or microparticles is of part...
An ultrasonic device for micro-patterning and precision manipulation of micrometre-scale particles i...
An ultrasonic device for micro-patterning and precision manipulation of micrometre-scale particles i...
We present a novel device for acoustically manipulating or sonotweezing micron-scale elements. Such ...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
A method of manipulating microparticles in a liquid using ultrasound is proposed and demonstrated. A...
Ultrasonic particle manipulation tools have many promising applications in life sciences, expanding ...
Ultrasonic particle manipulation tools have many promising applications in life sciences, expanding ...
We describe the construction of a ultrasonic device suitable for micro patterning particles and cell...
Contact-free handling and control of particles using the optical, magnetic, acoustic, and electrical...
Ultrasonic standing wave manipulation has been proved to be a simple, robust technology to be integr...
Ultrasonic standing wave manipulation has been proved to be a simple, robust technology to be integr...
We show that Bessel-function acoustic pressure fields can be used to trap and controllably position ...
Controlling the relative positions and coalescence of independent cells or microparticles is of part...