Deterministic lateral displacement (DLD) devices have great potential for the separation and sorting of various suspended particles based on their size, shape, deformability, and other intrinsic properties. Currently, the basic idea for the separation mechanism is that the structure and geometry of DLDs uniquely determine the flow field, which in turn defines a critical particle size and the particle lateral displacement within a device. We employ numerical simulations using coarse-grained mesoscopic methods and two-dimensional models to elucidate the dynamics of both rigid spherical particles and deformable red blood cells (RBCs) in different DLD geometries. Several shapes of pillars, including circular, diamond, square, and triangular str...
Deterministic Lateral Displacement (DLD) is a relatively recent microfluidics-assisted technique whi...
Deterministic lateral displacement (DLD), a hydrodynamic, microfluidic technology, was first reporte...
We use a macromodel of a flow-driven deterministic lateral displacement (DLD) microfluidic system to...
Mesoscopic simulations with two-dimensional (2D) models have been performed to elucidate the dynamic...
The ability to sort cells is extremely desirable in many fields such as diagnostics, chemical proc...
Deterministic Lateral Displacement (DLD) devices have been used to separate particles based on size ...
Microfluidic cell separation techniques are of great interest since they help rapid medical diagnose...
Sorting cells based on their intrinsic properties is a highly desirable objective, since changes in ...
Recent advances in cell sorting aim at the development of novel methods that are sensitive to variou...
An important step in diagnostics is the isolation of specific cells and microorganisms of interest f...
To better understand how deformable and non-spherical particles behave in sorting devices based on d...
An important step in diagnostics is the isolation of specific cells and microorganisms of interest f...
Deterministic lateral displacement (DLD) is a size-based separation technique in microfluidic device...
A combination of mesoscale hydrodynamic simulations and microfluidic experiments are used to explore...
Continuous separation of particles of different sizes and shapes is important in both clinical diagn...
Deterministic Lateral Displacement (DLD) is a relatively recent microfluidics-assisted technique whi...
Deterministic lateral displacement (DLD), a hydrodynamic, microfluidic technology, was first reporte...
We use a macromodel of a flow-driven deterministic lateral displacement (DLD) microfluidic system to...
Mesoscopic simulations with two-dimensional (2D) models have been performed to elucidate the dynamic...
The ability to sort cells is extremely desirable in many fields such as diagnostics, chemical proc...
Deterministic Lateral Displacement (DLD) devices have been used to separate particles based on size ...
Microfluidic cell separation techniques are of great interest since they help rapid medical diagnose...
Sorting cells based on their intrinsic properties is a highly desirable objective, since changes in ...
Recent advances in cell sorting aim at the development of novel methods that are sensitive to variou...
An important step in diagnostics is the isolation of specific cells and microorganisms of interest f...
To better understand how deformable and non-spherical particles behave in sorting devices based on d...
An important step in diagnostics is the isolation of specific cells and microorganisms of interest f...
Deterministic lateral displacement (DLD) is a size-based separation technique in microfluidic device...
A combination of mesoscale hydrodynamic simulations and microfluidic experiments are used to explore...
Continuous separation of particles of different sizes and shapes is important in both clinical diagn...
Deterministic Lateral Displacement (DLD) is a relatively recent microfluidics-assisted technique whi...
Deterministic lateral displacement (DLD), a hydrodynamic, microfluidic technology, was first reporte...
We use a macromodel of a flow-driven deterministic lateral displacement (DLD) microfluidic system to...