Manipulating biological cells or microparticles in three dimensions (3D) is invaluable for many biomedical applications, and recently effective and rapid manipulations of microparticles in 2D and 3D within microchannels or chambers using surface acoustic waves (SAWs) with bulk piezoelectric materials have been reported. However, these are generally expensive, or brittle and cannot be easily integrated into a single lab-on-chip. In this paper, we realized microparticle/cell patterning and 3D manipulation of yeast cells inside a chamber with a height of 1 mm using thin film ZnO/Si SAW devices. Effects of SAW frequency, channel width and thickness on alignment of microparticles were firstly investigated, and positions of the microparticles in ...
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...
Acoustofluidics has been increasingly applied in biology, medicine and chemistry due to its versatil...
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...
Manipulating biological cells or microparticles in three dimensions (3D) is invaluable for many biom...
Patterning and manipulating of living cells and microparticles have tremendous potential application...
Microfluidic manipulation technology refers to precise control of the motion state of microparticles...
The ability of surface acoustic waves to trap and manipulate micrometer-scale particles and biologic...
Acoustic force patterning is an emerging technology that provides a platform to control the spatial ...
Lab-on-a-chip (LOC) is one of the most important microsystem applications with promise for use in mi...
Surface acoustic wave (SAW) technology has been widely used to manipulate microparticles and biologi...
This project investigates the use of surface acoustic waves (SAWs) for applications in low cost, low...
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...
A method based on standing surface acoustic waves (SSAWs) is proposed to pattern and manipulate micr...
Acoustofluidics has been increasingly applied in biology, medicine and chemistry due to its versatil...
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...
Manipulating biological cells or microparticles in three dimensions (3D) is invaluable for many biom...
Patterning and manipulating of living cells and microparticles have tremendous potential application...
Microfluidic manipulation technology refers to precise control of the motion state of microparticles...
The ability of surface acoustic waves to trap and manipulate micrometer-scale particles and biologic...
Acoustic force patterning is an emerging technology that provides a platform to control the spatial ...
Lab-on-a-chip (LOC) is one of the most important microsystem applications with promise for use in mi...
Surface acoustic wave (SAW) technology has been widely used to manipulate microparticles and biologi...
This project investigates the use of surface acoustic waves (SAWs) for applications in low cost, low...
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...
A method based on standing surface acoustic waves (SSAWs) is proposed to pattern and manipulate micr...
Acoustofluidics has been increasingly applied in biology, medicine and chemistry due to its versatil...