There is growing interest in quantifying vascular cell and tissue stiffness. Most measurement approaches, however, are incapable of assessing stiffness in the presence of physiological flows. We developed a microfluidic approach which allows measurement of shear modulus (G) during flow. The design included a chamber with glass windows allowing imaging with upright or inverted microscopes. Flow was controlled gravitationally to push culture media through the chamber. Fluorescent beads were conjugated to the sample surface and imaged before and during flow. Bead displacements were calculated from images and G was computed as the ratio of imposed shear stress to measured shear strain. Fluid-structure simulations showed that shear stress on the...
Cell stiffness is a sensitive indicator of physiological and pathological changes in cells, with man...
AbstractLeukocyte adhesion is determined by the balance between molecular adhesive forces and convec...
The deformability of a cell is the direct result of a complex interplay between the different consti...
International audienceNumerous cell functions are accompanied by phenotypic changes in viscoelastic ...
To determine the effect of laminar fluid shear stress on the morphology, motility, and biochemical e...
Thin layers of gels with mechanical properties mimicking animal tissues are widely used to study the...
The quantification of cellular mechanical properties is of tremendous interest in biology and medici...
Red blood cells (RBCs) are the most common type of blood cell, have a biconcave disk shape with diam...
Shear stress of physiological flows in the human body plays a critical role in maintaining the struc...
The endothelium is a thin layer of endothelial cells that line the interior surface of an artery. Du...
Micromechanical environmental factors have significant impact on the determination of cell fate. Flu...
A parallel plate flow chamber-based flow system is a flow system that allows for microscopic observa...
Shear stresses are known to influence the morphology, and even the fate, of many cell types, includi...
AbstractWe studied the local viscoelasticity of the apical membrane of human umbilical vein endothel...
Cell stiffness is a sensitive indicator of physiological and pathological changes in cells, with man...
Cell stiffness is a sensitive indicator of physiological and pathological changes in cells, with man...
AbstractLeukocyte adhesion is determined by the balance between molecular adhesive forces and convec...
The deformability of a cell is the direct result of a complex interplay between the different consti...
International audienceNumerous cell functions are accompanied by phenotypic changes in viscoelastic ...
To determine the effect of laminar fluid shear stress on the morphology, motility, and biochemical e...
Thin layers of gels with mechanical properties mimicking animal tissues are widely used to study the...
The quantification of cellular mechanical properties is of tremendous interest in biology and medici...
Red blood cells (RBCs) are the most common type of blood cell, have a biconcave disk shape with diam...
Shear stress of physiological flows in the human body plays a critical role in maintaining the struc...
The endothelium is a thin layer of endothelial cells that line the interior surface of an artery. Du...
Micromechanical environmental factors have significant impact on the determination of cell fate. Flu...
A parallel plate flow chamber-based flow system is a flow system that allows for microscopic observa...
Shear stresses are known to influence the morphology, and even the fate, of many cell types, includi...
AbstractWe studied the local viscoelasticity of the apical membrane of human umbilical vein endothel...
Cell stiffness is a sensitive indicator of physiological and pathological changes in cells, with man...
Cell stiffness is a sensitive indicator of physiological and pathological changes in cells, with man...
AbstractLeukocyte adhesion is determined by the balance between molecular adhesive forces and convec...
The deformability of a cell is the direct result of a complex interplay between the different consti...