Passive particle focusing based on inertial microfluidics was recently introduced as a high-throughput alternative to active focusing methods that require an external force field to manipulate particles. In inertial microfluidics, dominant inertial forces cause particles to move across streamlines and occupy equilibrium positions along the faces of walls in flows through straight micro channels. In this study, we systematically analyzed the addition of secondary Dean forces by introducing curvature and show how randomly distributed particles entering a simple u-shaped curved channel are focused to a fixed lateral position exiting the curvature. We found the lateral particle focusing position to be fixed and largely independent of radius of ...
Focusing and separation of particles such as cells at high throughput is extremely attractive for bi...
The purpose of the recent work is to give a better explanation of how Dean vortices affect lateral f...
Inertial microfluidics represent a powerful new tool for accurately positioning cells and microparti...
Passive particle focusing based on inertial microfluidics was recently introduced as a high-throughp...
Inertial focusing is the migration of particles in flow laterally across a channel into well-defined...
The ability to control the motion of particles and cells in microchannels has been a center of fasci...
In this study, inertial focusing phenomenon was investigated, which can be used as a passive method...
Microfluidic inertial focusing reliably and passively aligns small particles and cells through a com...
Inertial microfluidics has emerged recently as a promising tool for high-throughput manipulation of ...
Since the beginning of microfluidics, the ability to control motion of particles in microchan...
Since the beginning of microfluidics, the ability to control motion of particles in microchan...
© 2018, Springer-Verlag GmbH Germany, part of Springer Nature. Inertial microfluidics has emerged re...
Inertial microfluidics has become one of the emerging topics due to potential applications such as p...
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...
Focusing and separation of particles such as cells at high throughput is extremely attractive for bi...
The purpose of the recent work is to give a better explanation of how Dean vortices affect lateral f...
Inertial microfluidics represent a powerful new tool for accurately positioning cells and microparti...
Passive particle focusing based on inertial microfluidics was recently introduced as a high-throughp...
Inertial focusing is the migration of particles in flow laterally across a channel into well-defined...
The ability to control the motion of particles and cells in microchannels has been a center of fasci...
In this study, inertial focusing phenomenon was investigated, which can be used as a passive method...
Microfluidic inertial focusing reliably and passively aligns small particles and cells through a com...
Inertial microfluidics has emerged recently as a promising tool for high-throughput manipulation of ...
Since the beginning of microfluidics, the ability to control motion of particles in microchan...
Since the beginning of microfluidics, the ability to control motion of particles in microchan...
© 2018, Springer-Verlag GmbH Germany, part of Springer Nature. Inertial microfluidics has emerged re...
Inertial microfluidics has become one of the emerging topics due to potential applications such as p...
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...
Focusing and separation of particles such as cells at high throughput is extremely attractive for bi...
The purpose of the recent work is to give a better explanation of how Dean vortices affect lateral f...
Inertial microfluidics represent a powerful new tool for accurately positioning cells and microparti...