Advances in micro-electromechanical systems (MEMS) technology and biomedical research necessitate micro-machined manipulators to capture, handle and position delicate micron-sized particles. To this end, a parallel plate acoustic resonator system has been investigated for the purposes of manipulation and entrapment of micron sized particles in air. Numerical and finite element modelling was performed to optimise the design of the layered acoustic resonator. To obtain an optimised resonator design, careful considerations of the effect of thickness and material properties are required. Furthermore, the effect of acoustic attenuation which is dependent on frequency is also considered within this study, leading to an optimum operational frequen...
International audienceIt is well known that a particle put into an ultrasonic standing wave tends to...
International audienceIt is well known that a particle put into an ultrasonic standing wave tends to...
Contact-free handling and control of particles using the optical, magnetic, acoustic, and electrical...
AbstractAdvances in micro-electromechanical systems (MEMS) technology and biomedical research necess...
AbstractAdvances in micro-electromechanical systems (MEMS) technology and biomedical research necess...
An acoustic resonator system has been investigated for the manipulation and entrapment of micron-siz...
Several approaches have been described for the manipulation of particles within an ultrasonic field....
The use of acoustic radiation forces for the manipulation of particles, bacteria and cells is drawin...
Ultrasonic standing waves can be used to generate radiation forces which act on particles within a f...
Ultrasonic standing waves can be used to generate radiation forces which act on particles within a f...
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...
This thesis contains 9 chapters making a total of 205 pages including articles. The articles are men...
This thesis contains 9 chapters making a total of 205 pages including articles. The articles are men...
Acoustic levitation technology is the use of ultrasound to form standing waves. Sound is a form of m...
International audienceIt is well known that a particle put into an ultrasonic standing wave tends to...
International audienceIt is well known that a particle put into an ultrasonic standing wave tends to...
Contact-free handling and control of particles using the optical, magnetic, acoustic, and electrical...
AbstractAdvances in micro-electromechanical systems (MEMS) technology and biomedical research necess...
AbstractAdvances in micro-electromechanical systems (MEMS) technology and biomedical research necess...
An acoustic resonator system has been investigated for the manipulation and entrapment of micron-siz...
Several approaches have been described for the manipulation of particles within an ultrasonic field....
The use of acoustic radiation forces for the manipulation of particles, bacteria and cells is drawin...
Ultrasonic standing waves can be used to generate radiation forces which act on particles within a f...
Ultrasonic standing waves can be used to generate radiation forces which act on particles within a f...
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...
This thesis contains 9 chapters making a total of 205 pages including articles. The articles are men...
This thesis contains 9 chapters making a total of 205 pages including articles. The articles are men...
Acoustic levitation technology is the use of ultrasound to form standing waves. Sound is a form of m...
International audienceIt is well known that a particle put into an ultrasonic standing wave tends to...
International audienceIt is well known that a particle put into an ultrasonic standing wave tends to...
Contact-free handling and control of particles using the optical, magnetic, acoustic, and electrical...