Deterministic lateral displacement (DLD) is a passive and label-free microfluidic separation technique with a strong potential for biological sample preparation purposes. Numerical and experimental models have been proposed so far to predict the particle behavior in DLD channels. However, they do not take into account the influence of the pillar anisotropy that induces a secondary pressure gradient in the direction perpendicular to the main flow. The influence of the pillar geometry on the anisotropy magnitude is presented. We show that anisotropy impacts the trajectory of particles in DLD devices and should be included in predictive models for the critical diameter
We use a macromodel of a flow-driven deterministic lateral displacement (DLD) microfluidic system to...
Deterministic lateral displacement technology was originally developed in the realm of microfluidics...
Deterministic Lateral Displacement (DLD) exploits the experimental observation that in microfluidics...
Deterministic lateral displacement (DLD) is a passive and label-free microfluidic separation techniq...
International audienceDeterministic lateral displacement (DLD) devices enable to separate nanometer ...
We investigate anisotropic permeability of microfluidic deterministic lateral displacement (DLD) arr...
Deterministic lateral displacement (DLD), a hydrodynamic, microfluidic technology, was first reporte...
The advent of microfluidics in the 1990s promised a revolution in multiple industries from healthcar...
Deterministic lateral displacement (DLD) has been recently proposed as a simple and efficient method...
thesisUtilization of ultrafine particles becomes a major concern in the mineral processing industry ...
Deterministic lateral displacement (DLD) devices have great potential for the separation and sorting...
Deterministic Lateral Displacement (DLD) is a relatively recent microfluidics-assisted technique whi...
Deterministic lateral displacement (DLD) is a size-based separation technique in microfluidic device...
Deterministic lateral displacement (DLD) is a high-resolution passive microfluidic separation method...
Continuous separation of particles of different sizes and shapes is important in both clinical diagn...
We use a macromodel of a flow-driven deterministic lateral displacement (DLD) microfluidic system to...
Deterministic lateral displacement technology was originally developed in the realm of microfluidics...
Deterministic Lateral Displacement (DLD) exploits the experimental observation that in microfluidics...
Deterministic lateral displacement (DLD) is a passive and label-free microfluidic separation techniq...
International audienceDeterministic lateral displacement (DLD) devices enable to separate nanometer ...
We investigate anisotropic permeability of microfluidic deterministic lateral displacement (DLD) arr...
Deterministic lateral displacement (DLD), a hydrodynamic, microfluidic technology, was first reporte...
The advent of microfluidics in the 1990s promised a revolution in multiple industries from healthcar...
Deterministic lateral displacement (DLD) has been recently proposed as a simple and efficient method...
thesisUtilization of ultrafine particles becomes a major concern in the mineral processing industry ...
Deterministic lateral displacement (DLD) devices have great potential for the separation and sorting...
Deterministic Lateral Displacement (DLD) is a relatively recent microfluidics-assisted technique whi...
Deterministic lateral displacement (DLD) is a size-based separation technique in microfluidic device...
Deterministic lateral displacement (DLD) is a high-resolution passive microfluidic separation method...
Continuous separation of particles of different sizes and shapes is important in both clinical diagn...
We use a macromodel of a flow-driven deterministic lateral displacement (DLD) microfluidic system to...
Deterministic lateral displacement technology was originally developed in the realm of microfluidics...
Deterministic Lateral Displacement (DLD) exploits the experimental observation that in microfluidics...