A new microfluidic device for fast and high-throughput particle focusing is reported. The particle focusing is based on the combination of inertial lift force effect and centrifugal force effect generated in a microchannel with a series of repeated asymmetric sharp corners on one side of the channel wall. The inertial lift force induces two focused particle streams in the microchannel, and the centrifugal force generated at the sharp corner structures tends to drive the particles laterally away from the corner. With the use of a series of repeated asymmetric sharp corner structures, a single and highly focused particle stream was achieved near the straight channel wall at a wide range of flow rate. In comparison with other hydrodynamic part...
The precise control and manipulation of small particles in the microscale using inertial flow has va...
The precise control and manipulation of small particles in the microscale using inertial flow has va...
High-throughput, high-precision single-stream focusing of microparticles has a potentially wide rang...
A new microfluidic device for fast and high throughput microparticle focusing is reported. The parti...
We report a continuous passive particle focusing method using a novel microchannel with symmetric sh...
High-throughput, high-precision single-stream focusing of microparticles has a potentially wide rang...
High-throughput, high-precision single-stream focusing of microparticles has a potentially wide rang...
Inertial Microfluidics offer a high throughput, label-free, easy to design, and cost-effective solut...
Inertial microfluidics has emerged recently as a promising tool for high-throughput manipulation of ...
Inertial Microfluidics offer a high throughput, label-free, easy to design, and cost-effective solut...
Three-dimensional (3D) particle focusing in microfluidics is a fundamental capability with a wide ra...
High-throughput, high-precision single-stream focusing of microparticles has a potentially wide rang...
Inertial Microfluidics offer a high throughput, label-free, easy to design, and cost-effective solut...
Inertial Microfluidics offer a high throughput, label-free, easy to design, and cost-effective solut...
© 2018, Springer-Verlag GmbH Germany, part of Springer Nature. Inertial microfluidics has emerged re...
The precise control and manipulation of small particles in the microscale using inertial flow has va...
The precise control and manipulation of small particles in the microscale using inertial flow has va...
High-throughput, high-precision single-stream focusing of microparticles has a potentially wide rang...
A new microfluidic device for fast and high throughput microparticle focusing is reported. The parti...
We report a continuous passive particle focusing method using a novel microchannel with symmetric sh...
High-throughput, high-precision single-stream focusing of microparticles has a potentially wide rang...
High-throughput, high-precision single-stream focusing of microparticles has a potentially wide rang...
Inertial Microfluidics offer a high throughput, label-free, easy to design, and cost-effective solut...
Inertial microfluidics has emerged recently as a promising tool for high-throughput manipulation of ...
Inertial Microfluidics offer a high throughput, label-free, easy to design, and cost-effective solut...
Three-dimensional (3D) particle focusing in microfluidics is a fundamental capability with a wide ra...
High-throughput, high-precision single-stream focusing of microparticles has a potentially wide rang...
Inertial Microfluidics offer a high throughput, label-free, easy to design, and cost-effective solut...
Inertial Microfluidics offer a high throughput, label-free, easy to design, and cost-effective solut...
© 2018, Springer-Verlag GmbH Germany, part of Springer Nature. Inertial microfluidics has emerged re...
The precise control and manipulation of small particles in the microscale using inertial flow has va...
The precise control and manipulation of small particles in the microscale using inertial flow has va...
High-throughput, high-precision single-stream focusing of microparticles has a potentially wide rang...