Viscoelasticity-induced particle migration has recently received increasing attention due to its ability to obtain high-quality focusing over a wide range of flow rates. However, its application is limited to low throughput regime since the particles can defocus as flow rate increases. Using an engineered carrier medium with constant and low viscosity and strong elasticity, the sample flow rates are improved to be 1 order of magnitude higher than those in existing studies. Utilizing differential focusing of particles of different sizes, here, we present sheathless particle/cell separation in simple straight microchannels that possess excellent parallelizability for further throughput enhancement. The present method can be implemented over a...
I ABSTRACT Particle migration is very important and essential for focusing, separating, counting, de...
Microfluidic separation of particles has been implemented using a variety of force fields. We demons...
Viscoelastic flow-based particle manipulation techniques enable bio-particle focusing, separation, a...
Viscoelasticity-induced particle migration has recently received increasing attention due to its abi...
Viscoelasticity-induced particle migration has recently received increasing attention due to its abi...
Viscoelasticity-induced particle migration has recently received increasing attention due to its abi...
Viscoelasticity-induced particle migration has recently received increasing attention due to its abi...
AbstractWe demonstrate a label-free and sheathless hydrodynamic approach that successfully separate ...
Implementation of viscoelasticity-based particle migration techniques has attracted significant inte...
In this paper, a novel microfluidic device for sheathless particle focusing and separation in viscoe...
Controlling the fate of particles and cells in microfluidic devices is critical in many biomedical a...
Controlling the fate of particles and cells in microfluidic devices is critical in many biomedical a...
Controlling the fate of particles and cells in microfluidic devices is critical in many biomedical a...
We developed a new approach to separate bacteria from human blood cells based on soft inertial force...
In this paper, a novel microfluidic device for sheathless particle focusing and separation in viscoe...
I ABSTRACT Particle migration is very important and essential for focusing, separating, counting, de...
Microfluidic separation of particles has been implemented using a variety of force fields. We demons...
Viscoelastic flow-based particle manipulation techniques enable bio-particle focusing, separation, a...
Viscoelasticity-induced particle migration has recently received increasing attention due to its abi...
Viscoelasticity-induced particle migration has recently received increasing attention due to its abi...
Viscoelasticity-induced particle migration has recently received increasing attention due to its abi...
Viscoelasticity-induced particle migration has recently received increasing attention due to its abi...
AbstractWe demonstrate a label-free and sheathless hydrodynamic approach that successfully separate ...
Implementation of viscoelasticity-based particle migration techniques has attracted significant inte...
In this paper, a novel microfluidic device for sheathless particle focusing and separation in viscoe...
Controlling the fate of particles and cells in microfluidic devices is critical in many biomedical a...
Controlling the fate of particles and cells in microfluidic devices is critical in many biomedical a...
Controlling the fate of particles and cells in microfluidic devices is critical in many biomedical a...
We developed a new approach to separate bacteria from human blood cells based on soft inertial force...
In this paper, a novel microfluidic device for sheathless particle focusing and separation in viscoe...
I ABSTRACT Particle migration is very important and essential for focusing, separating, counting, de...
Microfluidic separation of particles has been implemented using a variety of force fields. We demons...
Viscoelastic flow-based particle manipulation techniques enable bio-particle focusing, separation, a...