A method based on standing surface acoustic waves (SSAWs) is proposed to pattern and manipulate microparticles into a three-dimensional (3D) matrix inside a microchamber. An optical prism is used to observe the 3D alignment and patterning of the microparticles in the vertical and horizontal planes simultaneously. The acoustic radiation force effectively patterns the microparticles into lines of 3D space or crystal-lattice-like matrix patterns. A microparticle can be positioned precisely at a specified vertical location by balancing the forces of acoustic radiation, drag, buoyancy, and gravity acting on the microparticle. Experiments and finite-element numerical simulations both show that the acoustic radiation force increases gradually from...
Acoustophoresis is generation of force fields by using sound waves. In microfluidics, micro-scale fl...
Recent research has shown that interactions between acoustic waves and microfluidic channels can gen...
In this work, we demonstrate the possibility of focusing a stream of microparticles to generate a ma...
A method based on standing surface acoustic waves (SSAWs) is proposed to pattern and manipulate micr...
A method based on standing surface acoustic waves (SSAWs) is proposed to pattern and manipulate micr...
Patterning and manipulating of living cells and microparticles have tremendous potential application...
International audienceWe present an acoustofluidic method based on travelling surface acoustic waves...
Microfluidic manipulation technology refers to precise control of the motion state of microparticles...
International audienceWe present an acoustofluidic method based on travelling surface acoustic waves...
The ability of surface acoustic waves to trap and manipulate micrometer-scale particles and biologic...
The ability to manipulate micro particles creates a lot of potential applications such as in biolo...
Manipulating biological cells or microparticles in three dimensions (3D) is invaluable for many biom...
Manipulating biological cells or microparticles in three dimensions (3D) is invaluable for many biom...
Manipulating biological cells or microparticles in three dimensions (3D) is invaluable for many biom...
We present a novel device for acoustically manipulating or sonotweezing micron-scale elements. Such ...
Acoustophoresis is generation of force fields by using sound waves. In microfluidics, micro-scale fl...
Recent research has shown that interactions between acoustic waves and microfluidic channels can gen...
In this work, we demonstrate the possibility of focusing a stream of microparticles to generate a ma...
A method based on standing surface acoustic waves (SSAWs) is proposed to pattern and manipulate micr...
A method based on standing surface acoustic waves (SSAWs) is proposed to pattern and manipulate micr...
Patterning and manipulating of living cells and microparticles have tremendous potential application...
International audienceWe present an acoustofluidic method based on travelling surface acoustic waves...
Microfluidic manipulation technology refers to precise control of the motion state of microparticles...
International audienceWe present an acoustofluidic method based on travelling surface acoustic waves...
The ability of surface acoustic waves to trap and manipulate micrometer-scale particles and biologic...
The ability to manipulate micro particles creates a lot of potential applications such as in biolo...
Manipulating biological cells or microparticles in three dimensions (3D) is invaluable for many biom...
Manipulating biological cells or microparticles in three dimensions (3D) is invaluable for many biom...
Manipulating biological cells or microparticles in three dimensions (3D) is invaluable for many biom...
We present a novel device for acoustically manipulating or sonotweezing micron-scale elements. Such ...
Acoustophoresis is generation of force fields by using sound waves. In microfluidics, micro-scale fl...
Recent research has shown that interactions between acoustic waves and microfluidic channels can gen...
In this work, we demonstrate the possibility of focusing a stream of microparticles to generate a ma...