Nanoindentation technology has proven to be an effective method to investigate the viscoelastic properties of biological cells. The experimental data obtained by nanoindentation are frequently interpreted by Hertz contact model. However, in order to validate Hertz contact model, some studies assume that cells have infinite thickness which does not necessarily represent the real situation. In this study, a rigorous contact model based upon linear elasticity is developed for the interpretation of indentation tests of flattened cells. The cell, normally bonded to the Petri dish, is initially treated as an elastic layer of finite thickness perfectly fixed to a rigid substrate. The theory of linear elasticity is utilized to solve this contact is...
AbstractWhen measuring the elastic (Young’s) modulus of cells using AFM, good attachment of cells to...
Viscoelastic mechanical properties of biological cells are commonly measured using atomic force micr...
In this study, we presented investigation of mechanical properties by AFM nanoindentation on human h...
Nanoindentation technology has proven an effective method to investigate the viscoelastic properties...
The viscoelastic properties of the living cells are for quantifying the biomechanical effects of dru...
Understanding the relationship between the mechanical properties of living cells and physiology is a...
In the last decade, cell elasticity has been widely investigated as a potential label free indicator...
[EN] AFM-based force-distance curves are commonly used to characterize the nanomechanical properties...
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...
Proposed the model of cell rheological parameters determination based on nanoindentation. It is assu...
AbstractIn vitro, animal cells are mostly cultured on a gel substrate. It was recently shown that su...
Proposed the model of cell rheological parameters determination based on nanoindentation. It is assu...
Using finite element modeling, the mechanical properties of biological cells are investigated based ...
AbstractWhen measuring the elastic (Young’s) modulus of cells using AFM, good attachment of cells to...
Viscoelastic mechanical properties of biological cells are commonly measured using atomic force micr...
In this study, we presented investigation of mechanical properties by AFM nanoindentation on human h...
Nanoindentation technology has proven an effective method to investigate the viscoelastic properties...
The viscoelastic properties of the living cells are for quantifying the biomechanical effects of dru...
Understanding the relationship between the mechanical properties of living cells and physiology is a...
In the last decade, cell elasticity has been widely investigated as a potential label free indicator...
[EN] AFM-based force-distance curves are commonly used to characterize the nanomechanical properties...
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...
Proposed the model of cell rheological parameters determination based on nanoindentation. It is assu...
AbstractIn vitro, animal cells are mostly cultured on a gel substrate. It was recently shown that su...
Proposed the model of cell rheological parameters determination based on nanoindentation. It is assu...
Using finite element modeling, the mechanical properties of biological cells are investigated based ...
AbstractWhen measuring the elastic (Young’s) modulus of cells using AFM, good attachment of cells to...
Viscoelastic mechanical properties of biological cells are commonly measured using atomic force micr...
In this study, we presented investigation of mechanical properties by AFM nanoindentation on human h...