A novel micromanipulation technique of multi-objectives based on vibrating bubbles in an open chip environment is described in this paper. Bubbles were created in an aqueous medium by the thermal energy converted from a laser. When the piezoelectric stack fixed under the chip vibrated the bubbles, micro-objects (microparticles, cells, etc.) rapidly moved towards the bubbles. Results from numerical simulation demonstrate that convective flow around the bubbles can provide forces to capture objects. Since bubbles can be generated at arbitrary destinations in the open chip environment, they can act as both micromanipulators and transporters. As a result, micro- and bio-objects could be collected and transported effectively as masses in the ope...
When a gaseous bubble in liquid is excited by acoustic waves, it oscillates in harmony with the wave...
The use of ultrasonic standing waves for contactless manipulation of microparticles in microfluidic ...
The possible applications for micro-bubble powered devices are abundant and the potential of using t...
A novel micromanipulation technique of multi-objectives based on vibrating bubbles in an open chip e...
A novel micromanipulation technique of multi-objectives based on vibrating bubbles in an open chip e...
Microfluidics and micro-objects are usually driven in the sealed chips. We herein describe a novel t...
Micro-bubbles have been widely used in microfluidic systems. In this paper, we propose a micro-manip...
This thesis deals with the development of novel manipulation techniques of micro/mini objects using ...
Advanced particle manipulation techniques with synergistic effects of low cost, high degrees of cont...
Transport phenomena induced by micrometer size drops and bubbles are aesthetic, scientifically chall...
As a simple, clean and effective tool, micro bubbles have enabled advances in various lab on a chip ...
Instead of using conventional valves, we look into using bubbles in microfluidics that are remotely-...
International audienceRemote propulsion of micro scale mobile agents has great potential as wireless...
Precise manipulation of minute volumes of fluids is at the heart of microfluidics and opens up an ex...
Remote propulsion of micro scale mobile agents has great potential as wireless manipulation tools fo...
When a gaseous bubble in liquid is excited by acoustic waves, it oscillates in harmony with the wave...
The use of ultrasonic standing waves for contactless manipulation of microparticles in microfluidic ...
The possible applications for micro-bubble powered devices are abundant and the potential of using t...
A novel micromanipulation technique of multi-objectives based on vibrating bubbles in an open chip e...
A novel micromanipulation technique of multi-objectives based on vibrating bubbles in an open chip e...
Microfluidics and micro-objects are usually driven in the sealed chips. We herein describe a novel t...
Micro-bubbles have been widely used in microfluidic systems. In this paper, we propose a micro-manip...
This thesis deals with the development of novel manipulation techniques of micro/mini objects using ...
Advanced particle manipulation techniques with synergistic effects of low cost, high degrees of cont...
Transport phenomena induced by micrometer size drops and bubbles are aesthetic, scientifically chall...
As a simple, clean and effective tool, micro bubbles have enabled advances in various lab on a chip ...
Instead of using conventional valves, we look into using bubbles in microfluidics that are remotely-...
International audienceRemote propulsion of micro scale mobile agents has great potential as wireless...
Precise manipulation of minute volumes of fluids is at the heart of microfluidics and opens up an ex...
Remote propulsion of micro scale mobile agents has great potential as wireless manipulation tools fo...
When a gaseous bubble in liquid is excited by acoustic waves, it oscillates in harmony with the wave...
The use of ultrasonic standing waves for contactless manipulation of microparticles in microfluidic ...
The possible applications for micro-bubble powered devices are abundant and the potential of using t...