© 2019 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Recently, particle concentration and filtration using inertial microfluidics have drawn attention as an alternative to membrane and centrifugal technologies for industrial applications, where the target particle size varies between 1 µm and 500 µm. Inevitably, the bigger particle size (>50 µm) mandates scaling up the channel cross-section or hydraulic diameter (DH > 0.5 mm). The Dean-coupled inertial focusing dynamics in spiral microchannels is studied broadly; however, the impacts of secondary flow on particle migration in a scaled-up spiral channel is not fully elucidated. The mechanism of particle focusing inside scaled-up rectangular and trapezoidal spiral channels (i.e., 5–10× bigger th...
Fine manipulation of particles is essential for the analysis of complex samples such as blood or env...
Inertial microfluidics has become one of the emerging topics due to potential applications such as p...
Inertial focusing is a microfluidic based separation and concentration technology that has expanded ...
Inertial microfluidics has emerged recently as a promising tool for high-throughput manipulation of ...
© 2018, Springer-Verlag GmbH Germany, part of Springer Nature. Inertial microfluidics has emerged re...
The paper reports a new method for three-dimensional observation of the location of focused particle...
Passive particle focusing based on inertial microfluidics was recently introduced as a high-throughp...
Rapidly evolving cell-based therapies towards clinical trials demand alternative approaches for effi...
Passive particle focusing based on inertial microfluidics was recently introduced as a high-throughp...
The ability to control and manipulate the motion of particles or bio-cells from a complex mixture ha...
The ability to control and manipulate the motion of particles or bio-cells from a complex mixture ha...
The ability to control and manipulate the motion of particles or bio-cells from a complex mixture ha...
The ability to control the motion of particles and cells in microchannels has been a center of fasci...
Focusing and separation of particles such as cells at high throughput is extremely attractive for bi...
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 microfluidics has become one of the emerging topics due to potential applications such as p...
Inertial focusing is a microfluidic based separation and concentration technology that has expanded ...
Inertial microfluidics has emerged recently as a promising tool for high-throughput manipulation of ...
© 2018, Springer-Verlag GmbH Germany, part of Springer Nature. Inertial microfluidics has emerged re...
The paper reports a new method for three-dimensional observation of the location of focused particle...
Passive particle focusing based on inertial microfluidics was recently introduced as a high-throughp...
Rapidly evolving cell-based therapies towards clinical trials demand alternative approaches for effi...
Passive particle focusing based on inertial microfluidics was recently introduced as a high-throughp...
The ability to control and manipulate the motion of particles or bio-cells from a complex mixture ha...
The ability to control and manipulate the motion of particles or bio-cells from a complex mixture ha...
The ability to control and manipulate the motion of particles or bio-cells from a complex mixture ha...
The ability to control the motion of particles and cells in microchannels has been a center of fasci...
Focusing and separation of particles such as cells at high throughput is extremely attractive for bi...
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 microfluidics has become one of the emerging topics due to potential applications such as p...
Inertial focusing is a microfluidic based separation and concentration technology that has expanded ...