AbstractWe predict the amplification of mechanical stress, force, and torque on an adherent cell due to flow within a narrow microchannel. We model this system as a semicircular bulge on a microchannel wall, with pressure-driven flow. This two-dimensional model is solved computationally by the boundary element method. Algebraic expressions are developed by using forms suggested by lubrication theory that can be used simply and accurately to predict the fluid stress, force, and torque based upon the fluid viscosity, μ, channel height, H, cell size, R, and flow rate per unit width, Q2-d. This study shows that even for the smallest cells (γ=R/H≪1), the stress, force, and torque can be significantly greater than that predicted based on flow in ...
Shear stress, pressure, and flow rate are fluid dynamic parameters that can lead to changes in the m...
This thesis investigates the dynamics of cells in linear shear flow near a plane wall. The first par...
International audienceWe report how cell rheology measurements can be performed by monitoring the de...
AbstractWe predict the amplification of mechanical stress, force, and torque on an adherent cell due...
Hydrodynamic shear force along the bottom microchannel wall has been utilized in cell adhesion studi...
International audienceWe present experiments involving cancer cells adhering to microchannels, subje...
International audienceWe present experiments involving cancer cells adhering to microchannels, subje...
International audienceWe present experiments involving cancer cells adhering to microchannels, subje...
International audienceWe present experiments involving cancer cells adhering to microchannels, subje...
Summary A basic 2D numerical model has been developed to gain insight into the surface deformations ...
In this paper, microfluidic devices containing microwells that enabled cell docking were investigate...
In this paper, microfluidic devices containing microwells that enabled cell docking were investigate...
In this paper, microfluidic devices containing microwells that enabled cell docking were investigate...
In this paper, microfluidic devices containing microwells that enabled cell docking were investigate...
In this paper, microfluidic devices containing microwells that enabled cell docking were investigate...
Shear stress, pressure, and flow rate are fluid dynamic parameters that can lead to changes in the m...
This thesis investigates the dynamics of cells in linear shear flow near a plane wall. The first par...
International audienceWe report how cell rheology measurements can be performed by monitoring the de...
AbstractWe predict the amplification of mechanical stress, force, and torque on an adherent cell due...
Hydrodynamic shear force along the bottom microchannel wall has been utilized in cell adhesion studi...
International audienceWe present experiments involving cancer cells adhering to microchannels, subje...
International audienceWe present experiments involving cancer cells adhering to microchannels, subje...
International audienceWe present experiments involving cancer cells adhering to microchannels, subje...
International audienceWe present experiments involving cancer cells adhering to microchannels, subje...
Summary A basic 2D numerical model has been developed to gain insight into the surface deformations ...
In this paper, microfluidic devices containing microwells that enabled cell docking were investigate...
In this paper, microfluidic devices containing microwells that enabled cell docking were investigate...
In this paper, microfluidic devices containing microwells that enabled cell docking were investigate...
In this paper, microfluidic devices containing microwells that enabled cell docking were investigate...
In this paper, microfluidic devices containing microwells that enabled cell docking were investigate...
Shear stress, pressure, and flow rate are fluid dynamic parameters that can lead to changes in the m...
This thesis investigates the dynamics of cells in linear shear flow near a plane wall. The first par...
International audienceWe report how cell rheology measurements can be performed by monitoring the de...