High-throughput, high-precision single-stream focusing of microparticles has a potentially wide range of applications in biochemical analysis and clinical diagnosis. In this work, we develop a sheathless three-dimensional (3D) particle-focusing method in a single-layer microchannel. This novel microchannel consists of periodic high-aspect-ratio curved channels and straight channels. The proposed method takes advantage of both the curved channels, which induce Dean flow to promote particle migration, and straight channels, which suppress the remaining stirring effects of Dean flow to stabilize the achieved particle focusing. The 3D particle focusing is demonstrated experimentally, and the mechanism is analyzed theoretically. The effects of f...
Inertial focusing is the migration of particles in flow laterally across a channel into well-defined...
Inertial microfluidics has emerged recently as a promising tool for high-throughput manipulation of ...
Passive particle focusing based on inertial microfluidics was recently introduced as a high-throughp...
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...
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...
A new microfluidic device for fast and high throughput microparticle focusing is reported. The parti...
Three-dimensional (3D) particle focusing in microfluidics is a fundamental capability with a wide ra...
Passive particle focusing based on inertial microfluidics was recently introduced as a high-throughp...
A new microfluidic device for fast and high-throughput particle focusing is reported. The particle f...
The recent rapid growth of microfluidic applications has witnessed the emergence of several particle...
The recent rapid growth of microfluidic applications has witnessed the emergence of several particle...
Fine manipulation of particles is essential for the analysis of complex samples such as blood or env...
Fine manipulation of particles is essential for the analysis of complex samples such as blood or env...
Inertial focusing is the migration of particles in flow laterally across a channel into well-defined...
Inertial microfluidics has emerged recently as a promising tool for high-throughput manipulation of ...
Passive particle focusing based on inertial microfluidics was recently introduced as a high-throughp...
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...
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...
A new microfluidic device for fast and high throughput microparticle focusing is reported. The parti...
Three-dimensional (3D) particle focusing in microfluidics is a fundamental capability with a wide ra...
Passive particle focusing based on inertial microfluidics was recently introduced as a high-throughp...
A new microfluidic device for fast and high-throughput particle focusing is reported. The particle f...
The recent rapid growth of microfluidic applications has witnessed the emergence of several particle...
The recent rapid growth of microfluidic applications has witnessed the emergence of several particle...
Fine manipulation of particles is essential for the analysis of complex samples such as blood or env...
Fine manipulation of particles is essential for the analysis of complex samples such as blood or env...
Inertial focusing is the migration of particles in flow laterally across a channel into well-defined...
Inertial microfluidics has emerged recently as a promising tool for high-throughput manipulation of ...
Passive particle focusing based on inertial microfluidics was recently introduced as a high-throughp...