Hydrodynamic shear force along the bottom microchannel wall has been utilized in cell adhesion studies to detach cells in microfluidic channels. Due to the small dimensions of microfluidic channels, the shear stress produced in a conventional microchannel is dependent mainly on the fluid velocity and channel height. The wall shear force magnitude increases as the channel height is reduced. However, a reduced channel height decreases the sample volume to be contained in the fluidic channel and also increases the pressure drop significantly which may fail the fluidic device. In this study, a novel microchannel with a trapezoidal structure was investigated using computational fluid dynamics simulations. The key fluidic properties, including wa...
International audienceWe report how cell rheology measurements can be performed by monitoring the de...
International audienceWe report how cell rheology measurements can be performed by monitoring the de...
International audienceWe present experiments involving cancer cells adhering to microchannels, subje...
Fluid-based non-specific adsorption (NSA) methods and cell adhesion studies both use hydrodynamic fo...
Shear stress, pressure, and flow rate are fluid dynamic parameters that can lead to changes in the m...
Copyright © 2022 by the authors. Shear stress, pressure, and flow rate are fluid dynamic parameters ...
Copyright © 2022 by the authors. Shear stress, pressure, and flow rate are fluid dynamic parameters ...
Copyright © 2022 by the authors. Shear stress, pressure, and flow rate are fluid dynamic parameters ...
Copyright © 2022 by the authors. Shear stress, pressure, and flow rate are fluid dynamic parameters ...
Shear stress, pressure, and flow rate are fluid dynamic parameters that can lead to changes in the m...
AbstractWe predict the amplification of mechanical stress, force, and torque on an adherent cell due...
International audienceWe report how cell rheology measurements can be performed by monitoring the de...
International audienceWe report how cell rheology measurements can be performed by monitoring the de...
International audienceWe report how cell rheology measurements can be performed by monitoring the de...
International audienceWe present experiments involving cancer cells adhering to microchannels, subje...
International audienceWe report how cell rheology measurements can be performed by monitoring the de...
International audienceWe report how cell rheology measurements can be performed by monitoring the de...
International audienceWe present experiments involving cancer cells adhering to microchannels, subje...
Fluid-based non-specific adsorption (NSA) methods and cell adhesion studies both use hydrodynamic fo...
Shear stress, pressure, and flow rate are fluid dynamic parameters that can lead to changes in the m...
Copyright © 2022 by the authors. Shear stress, pressure, and flow rate are fluid dynamic parameters ...
Copyright © 2022 by the authors. Shear stress, pressure, and flow rate are fluid dynamic parameters ...
Copyright © 2022 by the authors. Shear stress, pressure, and flow rate are fluid dynamic parameters ...
Copyright © 2022 by the authors. Shear stress, pressure, and flow rate are fluid dynamic parameters ...
Shear stress, pressure, and flow rate are fluid dynamic parameters that can lead to changes in the m...
AbstractWe predict the amplification of mechanical stress, force, and torque on an adherent cell due...
International audienceWe report how cell rheology measurements can be performed by monitoring the de...
International audienceWe report how cell rheology measurements can be performed by monitoring the de...
International audienceWe report how cell rheology measurements can be performed by monitoring the de...
International audienceWe present experiments involving cancer cells adhering to microchannels, subje...
International audienceWe report how cell rheology measurements can be performed by monitoring the de...
International audienceWe report how cell rheology measurements can be performed by monitoring the de...
International audienceWe present experiments involving cancer cells adhering to microchannels, subje...