Inertial microfluidics is a promising tool for a label-free particle manipulation for microfluidics technology. It can be utilized for particle separation based on size and shape, as well as focusing of particles. Prediction of particles’ trajectories is essential for the design of inertial microfluidic devices. At this point, numerical modeling is an important tool to understand the underlying physics and assess the performance of devices. A Monte Carlo-type computational model based on a Lagrangian discrete phase model is developed to simulate the particle trajectories in a spiral microchannel for inertial microfluidics. The continuous phase (flow field) is solved without the presence of a discrete phase (particles) using COMSOL Mul...
Following the emergence of many blood transfusion-associated diseases, novel passive cell separation...
Inertial microfluidics has been widely used in high-throughput manipulation of particles and cells b...
The application of fully-inertial size-based microfluidic filtration technologies for particle separ...
Inertial microfluidics is a promising tool for a label-free particle manipulation for microfluidics ...
Inertial microfluidics refers to the manipulation of the location and velocity of particles suspende...
Microfluidic devices are tiny circuits that flow fluids instead of electrons. Because they are inexp...
Microfluidic devices are tiny circuits that flow fluids instead of electrons. Because they are inexp...
In the last decade, inertial microfluidics has attracted significant attention and a wide variety of...
Inertial effect has been extensively used in manipulating both engineered particles and biocolloids ...
Inertial effect has been extensively used in manipulating both engineered particles and biocolloids ...
Inertial microfluidics has emerged as an important tool for manipulating particles and cells. For a ...
Inertial effect has been extensively used in manipulating both engineered particles and biocolloids ...
In the last decade, inertial microfluidics has attracted significant attention and a wide variety of...
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...
Following the emergence of many blood transfusion-associated diseases, novel passive cell separation...
Inertial microfluidics has been widely used in high-throughput manipulation of particles and cells b...
The application of fully-inertial size-based microfluidic filtration technologies for particle separ...
Inertial microfluidics is a promising tool for a label-free particle manipulation for microfluidics ...
Inertial microfluidics refers to the manipulation of the location and velocity of particles suspende...
Microfluidic devices are tiny circuits that flow fluids instead of electrons. Because they are inexp...
Microfluidic devices are tiny circuits that flow fluids instead of electrons. Because they are inexp...
In the last decade, inertial microfluidics has attracted significant attention and a wide variety of...
Inertial effect has been extensively used in manipulating both engineered particles and biocolloids ...
Inertial effect has been extensively used in manipulating both engineered particles and biocolloids ...
Inertial microfluidics has emerged as an important tool for manipulating particles and cells. For a ...
Inertial effect has been extensively used in manipulating both engineered particles and biocolloids ...
In the last decade, inertial microfluidics has attracted significant attention and a wide variety of...
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...
Following the emergence of many blood transfusion-associated diseases, novel passive cell separation...
Inertial microfluidics has been widely used in high-throughput manipulation of particles and cells b...
The application of fully-inertial size-based microfluidic filtration technologies for particle separ...