Several cell-based biological applications in microfluidic systems require simultaneous high-throughput and individual handling of cells or other bioparticles. Available chip-based tools for contactless manipulation are designed for either high-precision handling of individual particles, or high-throughput handling of ensembles of particles. In order to simultaneously perform both, we have combined two manipulation technologies based on ultrasonic standing waves (USWs) and dielectrophoresis (DEP) in a microfluidic chip. The principle is based on the competition between long-range ultrasonic forces, short-range dielcctrophoretic forces and viscous drag forces from the fluid flow. The ultrasound is coupled into the microchannel resonator by a...
Ultrasonic standing wave manipulation has been proved to be a simple, robust technology to be integr...
An emerging demand for the precise manipulation of cells and particles for applications in cell biol...
Ultrasonic fields are able to exert forces on cells and other micron-scale particles, including micr...
The use of ultrasonic standing waves for contactless manipulation of microparticles in microfluidic ...
An emerging demand for the precise manipulation of cells and particles for applications in cell biol...
Microfluidics is a new trend in medical instrumentation to \ud miniaturize the size of medical devic...
Microfluidic chips have become a powerful tool in research where biological cells are processed and/...
Ultrasonic standing wave fields are able to trap and manipulate biological cells and other micron sc...
The ability to manipulate biological cells and micrometer-scale particles plays an important role in...
Cell-based approaches in medicine, biotechnology, and pharmaceutical research offer unique prospects...
Ultrasonic standing wave fields are able to trap and manipulate biological cells and other micron sc...
The development of lab-on-a-chip (LOC) devices over the past decade has attracted growing interest. ...
We present an integrated circuit/microfluidic chip that traps and moves individual living biological...
Abstract Dielectrophoresis (DEP) has become a promising technique to separate and identify cells and...
Ultrasonic fields can be used to trap and manipulate micron-scale particles and second-phase fluids,...
Ultrasonic standing wave manipulation has been proved to be a simple, robust technology to be integr...
An emerging demand for the precise manipulation of cells and particles for applications in cell biol...
Ultrasonic fields are able to exert forces on cells and other micron-scale particles, including micr...
The use of ultrasonic standing waves for contactless manipulation of microparticles in microfluidic ...
An emerging demand for the precise manipulation of cells and particles for applications in cell biol...
Microfluidics is a new trend in medical instrumentation to \ud miniaturize the size of medical devic...
Microfluidic chips have become a powerful tool in research where biological cells are processed and/...
Ultrasonic standing wave fields are able to trap and manipulate biological cells and other micron sc...
The ability to manipulate biological cells and micrometer-scale particles plays an important role in...
Cell-based approaches in medicine, biotechnology, and pharmaceutical research offer unique prospects...
Ultrasonic standing wave fields are able to trap and manipulate biological cells and other micron sc...
The development of lab-on-a-chip (LOC) devices over the past decade has attracted growing interest. ...
We present an integrated circuit/microfluidic chip that traps and moves individual living biological...
Abstract Dielectrophoresis (DEP) has become a promising technique to separate and identify cells and...
Ultrasonic fields can be used to trap and manipulate micron-scale particles and second-phase fluids,...
Ultrasonic standing wave manipulation has been proved to be a simple, robust technology to be integr...
An emerging demand for the precise manipulation of cells and particles for applications in cell biol...
Ultrasonic fields are able to exert forces on cells and other micron-scale particles, including micr...