AbstractIn vitro, animal cells are mostly cultured on a gel substrate. It was recently shown that substrate stiffness affects cellular behaviors in a significant way, including adhesion, differentiation, and migration. Therefore, an accurate method is needed to characterize the modulus of the substrate. In situ microscopic measurements of the gel substrate modulus are based on Hertz contact mechanics, where Young's modulus is derived from the indentation force and displacement measurements. In Hertz theory, the substrate is modeled as a linear elastic half-space with an infinite depth, whereas in practice, the thickness of the substrate, h, can be comparable to the contact radius and other relevant dimensions such as the radius of the inden...
Nanoindentation technology has proven an effective method to investigate the viscoelastic properties...
Measurements of Young's moduli are mostly evaluated using strong assumptions, such as sample homogen...
The measurement of the elastic modulus of soft biomaterials via nanoindentation relies on the accura...
AbstractIn vitro, animal cells are mostly cultured on a gel substrate. It was recently shown that su...
Tissue cells can sense mechanical properties of their surroundings, which, in vitro, generally refer...
Mechanosensing by adherent cells is usually studied by quantifying cell responses on hydrogels that ...
In conjunction with surface chemistry, the mechanical properties of cell culture substrates provide ...
Nanoindentation technology has proven to be an effective method to investigate the viscoelastic prop...
Measurements of Young's moduli are mostly evaluated using strong assumptions, such as sample homogen...
Viscoelastic mechanical properties of biological cells are commonly measured using atomic force micr...
Viscoelastic mechanical properties of biological cells are commonly measured using atomic force micr...
Viscoelastic mechanical properties of biological cells are commonly measured using atomic force micr...
Viscoelastic mechanical properties of biological cells are commonly measured using atomic force micr...
AbstractMechanical characterization of hydrogels is a challenging task because they are much softer ...
AbstractWhen measuring the elastic (Young’s) modulus of cells using AFM, good attachment of cells to...
Nanoindentation technology has proven an effective method to investigate the viscoelastic properties...
Measurements of Young's moduli are mostly evaluated using strong assumptions, such as sample homogen...
The measurement of the elastic modulus of soft biomaterials via nanoindentation relies on the accura...
AbstractIn vitro, animal cells are mostly cultured on a gel substrate. It was recently shown that su...
Tissue cells can sense mechanical properties of their surroundings, which, in vitro, generally refer...
Mechanosensing by adherent cells is usually studied by quantifying cell responses on hydrogels that ...
In conjunction with surface chemistry, the mechanical properties of cell culture substrates provide ...
Nanoindentation technology has proven to be an effective method to investigate the viscoelastic prop...
Measurements of Young's moduli are mostly evaluated using strong assumptions, such as sample homogen...
Viscoelastic mechanical properties of biological cells are commonly measured using atomic force micr...
Viscoelastic mechanical properties of biological cells are commonly measured using atomic force micr...
Viscoelastic mechanical properties of biological cells are commonly measured using atomic force micr...
Viscoelastic mechanical properties of biological cells are commonly measured using atomic force micr...
AbstractMechanical characterization of hydrogels is a challenging task because they are much softer ...
AbstractWhen measuring the elastic (Young’s) modulus of cells using AFM, good attachment of cells to...
Nanoindentation technology has proven an effective method to investigate the viscoelastic properties...
Measurements of Young's moduli are mostly evaluated using strong assumptions, such as sample homogen...
The measurement of the elastic modulus of soft biomaterials via nanoindentation relies on the accura...