Focusing and separation of particles such as cells at high throughput is extremely attractive for biomedical applications. Particle manipulation based on inertial effects requires a high flow speed and thus is well-suited to high-throughput applications. Recently, inertial focusing and separation using curvilinear microchannels has been attracting a great amount of interest because of the linear structure for parallelization, small device footprint, superior particle-focusing performance, and easy implementation of particle separation. However, the curvature directions of these microchannels alternate, leading to variations in both the magnitude and direction of the induced secondary flow. Accumulation of this variation along the channel ca...
Inertial focusing is the migration of particles in flow laterally across a channel into well-defined...
Passive particle focusing based on inertial microfluidics was recently introduced as a high-throughp...
Since the beginning of microfluidics, the ability to control motion of particles in microchan...
Focusing and separation of particles such as cells at high throughput is extremely attractive for bi...
Focusing and separation of particles such as cells at high throughput is extremely attractive for bi...
Focusing and separation of particles such as cells at high throughput is extremely attractive for bi...
Focusing and separation of particles such as cells at high throughput is extremely attractive for bi...
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...
© 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...
The ability to control the motion of particles and cells in microchannels has been a center of fasci...
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...
Microfluidic experiments have found wide applications in medical sciences and engineering, such as c...
Inertial focusing is the migration of particles in flow laterally across a channel into well-defined...
Passive particle focusing based on inertial microfluidics was recently introduced as a high-throughp...
Since the beginning of microfluidics, the ability to control motion of particles in microchan...
Focusing and separation of particles such as cells at high throughput is extremely attractive for bi...
Focusing and separation of particles such as cells at high throughput is extremely attractive for bi...
Focusing and separation of particles such as cells at high throughput is extremely attractive for bi...
Focusing and separation of particles such as cells at high throughput is extremely attractive for bi...
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...
© 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...
The ability to control the motion of particles and cells in microchannels has been a center of fasci...
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...
Microfluidic experiments have found wide applications in medical sciences and engineering, such as c...
Inertial focusing is the migration of particles in flow laterally across a channel into well-defined...
Passive particle focusing based on inertial microfluidics was recently introduced as a high-throughp...
Since the beginning of microfluidics, the ability to control motion of particles in microchan...