Atomic force microscope is an invaluable device to explore living specimens at a nanometric scale. It permits to image the topography of the sample in 3D, to measure its mechanical properties and to detect the presence of specific molecules bound on its surface. Here we describe the procedure to gather such a data set on living macrophages
Atomic force microscopy is a valuable and useful tool for the imaging and investigation of living ce...
Atomic force microscopy is being increasingly used to explore the physical properties of biological ...
Single-particle nanoindentation by atomic force microscopy (AFM) is an emergent technique to charact...
Stiffness tomography is a new atomic force microscopy imaging technique that allows highlighting str...
Measurements of local material properties of complex biological systems (e.g. live cells and viruses...
The behavior and mechanical properties of cells are strongly dependent on the biochemical and biomec...
The atomic force microscope is a widely used surface scanning apparatus capable of reconstructing at...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
The atomic force microscope (AFM) has become one of the leading nanoscale measurement techniques for...
The advent of atomic force microscopy (AFM) provides a powerful tool for investigating the behaviors...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
The present review details the methods used for the measurement of cells and their exudates using at...
Atomic force microscopy (AFM) is a highly sensitive non-invasive surface method able to provide insi...
Atomic Force Microscopy (AFM) has a great potential as a tool to characterize me-chanical and morpho...
AFM images can be used to obtain quantitative or qualitative information about the properties of bio...
Atomic force microscopy is a valuable and useful tool for the imaging and investigation of living ce...
Atomic force microscopy is being increasingly used to explore the physical properties of biological ...
Single-particle nanoindentation by atomic force microscopy (AFM) is an emergent technique to charact...
Stiffness tomography is a new atomic force microscopy imaging technique that allows highlighting str...
Measurements of local material properties of complex biological systems (e.g. live cells and viruses...
The behavior and mechanical properties of cells are strongly dependent on the biochemical and biomec...
The atomic force microscope is a widely used surface scanning apparatus capable of reconstructing at...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
The atomic force microscope (AFM) has become one of the leading nanoscale measurement techniques for...
The advent of atomic force microscopy (AFM) provides a powerful tool for investigating the behaviors...
The nanomechanical properties of living cells, such as their surface elastic response and adhesion, ...
The present review details the methods used for the measurement of cells and their exudates using at...
Atomic force microscopy (AFM) is a highly sensitive non-invasive surface method able to provide insi...
Atomic Force Microscopy (AFM) has a great potential as a tool to characterize me-chanical and morpho...
AFM images can be used to obtain quantitative or qualitative information about the properties of bio...
Atomic force microscopy is a valuable and useful tool for the imaging and investigation of living ce...
Atomic force microscopy is being increasingly used to explore the physical properties of biological ...
Single-particle nanoindentation by atomic force microscopy (AFM) is an emergent technique to charact...