Application of atomic force microscopy (AFM) to biological objects and processes under physiological conditions has been hampered so far by the deformation and destruction of the soft biological materials invoked. Here we describe a new mode of operation in which the standard V-shaped silicon nitride cantilever is oscillated under liquid and damped by the interaction between AFM tip and sample surface. Because of the viscoelastic behavior of the cellular surface, cells effectively "harden" under such a tapping motion at high frequencies and become less susceptible to deformation. Images obtained in this way primarily reveal the surface structure of the cell. It is now possible to study physiological processes, such as cell growth, with a mi...
The measurement of viscoelasticity of cells in physiological environments with high spatio-temporal ...
AbstractThe measurement of viscoelasticity of cells in physiological environments with high spatio-t...
In this work, a method based on atomic force microscopy (AFM) approach-reside-retract experiments wa...
Application of atomic force microscopy (AFM) to biological objects and processes under physiological...
Application of atomic force microscopy (AFM) to biological objects and processes under physiological...
We show that standard silicon nitride cantilevers can be used for tapping mode atomic force microsco...
During the last century, cellular biology has been mostly assessed from the biochemical point of vie...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
We developed force clamp force mapping (FCFM), an atomic force microscopy (AFM) technique for measur...
Extracellular matrix plays an important role in regulating the behaviors of cells, and utilizing mat...
International audienceBiological cells display viscoelastic mechanical properties that are a key fac...
Extracellular matrix plays an important role in regulating the behaviors of cells, and utilizing mat...
Extracellular matrix plays an important role in regulating the behaviors of cells, and utilizing mat...
The measurement of viscoelasticity of cells in physiological environments with high spatio-temporal ...
AbstractThe measurement of viscoelasticity of cells in physiological environments with high spatio-t...
In this work, a method based on atomic force microscopy (AFM) approach-reside-retract experiments wa...
Application of atomic force microscopy (AFM) to biological objects and processes under physiological...
Application of atomic force microscopy (AFM) to biological objects and processes under physiological...
We show that standard silicon nitride cantilevers can be used for tapping mode atomic force microsco...
During the last century, cellular biology has been mostly assessed from the biochemical point of vie...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
We developed force clamp force mapping (FCFM), an atomic force microscopy (AFM) technique for measur...
Extracellular matrix plays an important role in regulating the behaviors of cells, and utilizing mat...
International audienceBiological cells display viscoelastic mechanical properties that are a key fac...
Extracellular matrix plays an important role in regulating the behaviors of cells, and utilizing mat...
Extracellular matrix plays an important role in regulating the behaviors of cells, and utilizing mat...
The measurement of viscoelasticity of cells in physiological environments with high spatio-temporal ...
AbstractThe measurement of viscoelasticity of cells in physiological environments with high spatio-t...
In this work, a method based on atomic force microscopy (AFM) approach-reside-retract experiments wa...