Ultrasonic particle manipulation tools have many promising applications in life sciences research, expanding on the capabilities of current manipulation technologies. In this paper the feasibility of ultrasonic manipulation of particles and cells along a microfluidic channel with an array is investigated. An array integrated into a multilayer resonator structure drives particles towards the pressure nodal plane along the axis of the channel, then towards the acoustic velocity maximum centered above the driven elements. Switching the active elements along the array moves trapped particles along the microfluidic channel. A 1-D array coupled to a rectangular capillary has been simulated and fabricated for experimental testing. The device has a...
We are investigating means of handling microparticles in microfluidic systems, in particular localiz...
Ultrasonic standing waves can be used to generate radiation forces which act on particles within a f...
Advanced particle manipulation techniques with synergistic effects of low cost, high degrees of cont...
Ultrasonic particle manipulation tools have many promising applications in life sciences research, e...
Ultrasonic particle manipulation tools have many promising applications in life sciences, expanding ...
Ultrasonic particle manipulation tools have many promising applications in life sciences, expanding ...
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...
This paper presents the concept and initial work on a microfluidic platform for bead-based analysis ...
The use of ultrasonic standing waves for contactless manipulation of microparticles in microfluidic ...
An emerging demand for the precise manipulation of cells and particles for applications in cell biol...
Contact-free handling and control of particles using the optical, magnetic, acoustic, and electrical...
The sensing of cells within micro-fluidic components can be greatly enhanced by maximizing the conce...
Several approaches have been described for the manipulation of particles within an ultrasonic field....
Ultrasonic standing waves can be used to generate radiation forces which act on particles within a f...
We are investigating means of handling microparticles in microfluidic systems, in particular localiz...
Ultrasonic standing waves can be used to generate radiation forces which act on particles within a f...
Advanced particle manipulation techniques with synergistic effects of low cost, high degrees of cont...
Ultrasonic particle manipulation tools have many promising applications in life sciences research, e...
Ultrasonic particle manipulation tools have many promising applications in life sciences, expanding ...
Ultrasonic particle manipulation tools have many promising applications in life sciences, expanding ...
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...
This paper presents the concept and initial work on a microfluidic platform for bead-based analysis ...
The use of ultrasonic standing waves for contactless manipulation of microparticles in microfluidic ...
An emerging demand for the precise manipulation of cells and particles for applications in cell biol...
Contact-free handling and control of particles using the optical, magnetic, acoustic, and electrical...
The sensing of cells within micro-fluidic components can be greatly enhanced by maximizing the conce...
Several approaches have been described for the manipulation of particles within an ultrasonic field....
Ultrasonic standing waves can be used to generate radiation forces which act on particles within a f...
We are investigating means of handling microparticles in microfluidic systems, in particular localiz...
Ultrasonic standing waves can be used to generate radiation forces which act on particles within a f...
Advanced particle manipulation techniques with synergistic effects of low cost, high degrees of cont...