We present a novel Multi-Regime Analysis (MRA) routine for interpreting force indentation measurements of soft materials using atomic force microscopy. The MRA approach combines both well established and semi-empirical theories of contact mechanics within a single framework to deconvolute highly complex and non-linear force-indentation curves. The fundamental assumption in the present form of the model is that each structural contribution to the mechanical response acts in series with other 'mechanical resistors'. This simplification enables interpretation of the micromechanical properties of materials with hierarchical structures and it allows automated processing of large data sets, which is particularly indispensable for biological syste...
Investigating and modeling the mechanical properties of materials is important for many applications...
Nanoindentation refers to a class of experimental techniques where a micrometric force probe is used...
Atomic force microscopy is being increasingly used to explore the physical properties of biological ...
The analysis of mechanical properties on a nanometer scale is a useful tool for combining informatio...
International audienceMeasuring the structural stiffness aims to reveal the impact of nanostructured...
The AFM nanoindentation technique is a powerful tool for the mechanical characterization of biologic...
Atomic Force Microscopy (AFM) is a powerful tool enabling the mechanical characterization of biologi...
The behavior and mechanical properties of cells are strongly dependent on the biochemical and biomec...
Nanoindentation is a popular experimental technique for characterization of the mechanical propertie...
The elastic moduli of a range of polymers were characterized by nanoindentation on an atomic force m...
Atomic force microscopy (AFM) indentation has become an important technique for quantifying the mech...
Nanoindentation is a popular experimental technique for characterization of the mechanical propertie...
The analysis of atomic force microscopy (AFM) force data requires the selection of a contact point (...
AFM nanoindentations show a dependence of penetration, i.e., the relative motion between the sample ...
Nanoindentation is ideal for the characterization of inhomogeneous biological materials. However, th...
Investigating and modeling the mechanical properties of materials is important for many applications...
Nanoindentation refers to a class of experimental techniques where a micrometric force probe is used...
Atomic force microscopy is being increasingly used to explore the physical properties of biological ...
The analysis of mechanical properties on a nanometer scale is a useful tool for combining informatio...
International audienceMeasuring the structural stiffness aims to reveal the impact of nanostructured...
The AFM nanoindentation technique is a powerful tool for the mechanical characterization of biologic...
Atomic Force Microscopy (AFM) is a powerful tool enabling the mechanical characterization of biologi...
The behavior and mechanical properties of cells are strongly dependent on the biochemical and biomec...
Nanoindentation is a popular experimental technique for characterization of the mechanical propertie...
The elastic moduli of a range of polymers were characterized by nanoindentation on an atomic force m...
Atomic force microscopy (AFM) indentation has become an important technique for quantifying the mech...
Nanoindentation is a popular experimental technique for characterization of the mechanical propertie...
The analysis of atomic force microscopy (AFM) force data requires the selection of a contact point (...
AFM nanoindentations show a dependence of penetration, i.e., the relative motion between the sample ...
Nanoindentation is ideal for the characterization of inhomogeneous biological materials. However, th...
Investigating and modeling the mechanical properties of materials is important for many applications...
Nanoindentation refers to a class of experimental techniques where a micrometric force probe is used...
Atomic force microscopy is being increasingly used to explore the physical properties of biological ...