By sequentially pushing micro-beads towards and away from a sensing surface, we show that ultrasonic radiation forces can be used to enhance the interaction between a functionalised glass surface and polystyrene micro-beads, and identify those that bind to the surface by illuminating bound beads using an evanescent field generated by guided light. The movement towards and immobilisation of streptavidin coated beads onto a biotin functionalised waveguide surface is achieved by using a quarter-wavelength mode pushing beads onto the surface, while the removal of non-specifically bound beads uses a second quarter-wavelength mode which exhibits a kinetic energy maximum at the boundary between the carrier layer and fluid, drawing beads towards th...
We present a novel device for acoustically manipulating or sonotweezing micron-scale elements. Such ...
This paper proposes a new dynamic mode of generating bioanalytical arrays in microfluidic systems, b...
Both optical tweezers and acoustic tweezers have been demonstrated for trapping small particles in d...
By sequentially pushing micro-beads towards and away from a sensing surface, we show that ultrasonic...
AbstractBy sequentially pushing micro-beads towards and away from a sensing surface, we show that ul...
Realisation of a device intended for the manipulation and detection of bead-tagged DNA and other bio...
A new acoustic-optical-microfluidic system is presented for the manipulation of bead-tagged DNA mole...
The handling of biochemically functionalised beads or particles is becoming increasingly important i...
This paper presents the concept and initial work on a microfluidic platform for bead-based analysis ...
This paper proposes a new dynamic mode of generating bioanalytical arrays based on ultrasonic trappi...
Ultrasonic fields can be used to trap and manipulate micron-scale particles and second-phase fluids,...
Proteins play a key role in many biological processes and are thus useful indicators of health and d...
This paper reports a method to generate tunable bottle beams using an ultrasonic lens, by which the ...
The paper describes the use of ultrasonic standing waves as bulk acoustic wave actuators, exploiting...
AbstractThe use of primary acoustic radiation forces has been shown to be a valid technique for the ...
We present a novel device for acoustically manipulating or sonotweezing micron-scale elements. Such ...
This paper proposes a new dynamic mode of generating bioanalytical arrays in microfluidic systems, b...
Both optical tweezers and acoustic tweezers have been demonstrated for trapping small particles in d...
By sequentially pushing micro-beads towards and away from a sensing surface, we show that ultrasonic...
AbstractBy sequentially pushing micro-beads towards and away from a sensing surface, we show that ul...
Realisation of a device intended for the manipulation and detection of bead-tagged DNA and other bio...
A new acoustic-optical-microfluidic system is presented for the manipulation of bead-tagged DNA mole...
The handling of biochemically functionalised beads or particles is becoming increasingly important i...
This paper presents the concept and initial work on a microfluidic platform for bead-based analysis ...
This paper proposes a new dynamic mode of generating bioanalytical arrays based on ultrasonic trappi...
Ultrasonic fields can be used to trap and manipulate micron-scale particles and second-phase fluids,...
Proteins play a key role in many biological processes and are thus useful indicators of health and d...
This paper reports a method to generate tunable bottle beams using an ultrasonic lens, by which the ...
The paper describes the use of ultrasonic standing waves as bulk acoustic wave actuators, exploiting...
AbstractThe use of primary acoustic radiation forces has been shown to be a valid technique for the ...
We present a novel device for acoustically manipulating or sonotweezing micron-scale elements. Such ...
This paper proposes a new dynamic mode of generating bioanalytical arrays in microfluidic systems, b...
Both optical tweezers and acoustic tweezers have been demonstrated for trapping small particles in d...