Changes in the elastic properties of living tissues during normal development and in pathological processes are often due to modifications of the collagen component of the extracellular matrix at various length scales. Force volume AFM can precisely capture the mechanical properties of biological samples with force sensitivity and spatial resolution. The integration of AFM data with data of the molecular composition contributes to understanding the interplay between tissue biochemistry, organization and function. The detection of micrometer-size, heterogeneous domains at different elastic moduli in tissue sections by AFM has remained elusive so far, due to the lack of correlations with histological, optical and biochemical assessments. In t...
The function of cells is strongly determined by the properties of their extracellular microenvironme...
AbstractThe spatial and temporal changes of the mechanical properties of living cells reflect comple...
Abstract of the Nature Protocols Publication:Mammalian cells sense and react to the mechanics of the...
Atomic force microscope (AFM) has emerged as a powerful tool in the last two decades to study biolog...
As extracellular matrix (ECM) nano-characteristics play a crucial role in cell behavior, including c...
The mechanical properties of living cells and tissues are important for a variety of functional proc...
[EN] High-speed atomic force microscopy (AFM) enabled the imaging of protein interactions with milli...
Type I collagen, a fundamental extracellular matrix (ECM) component, is pivotal in maintaining tissu...
Scanning probe microscopy (SPM) has been in use for 30 years, and the form of SPM known as atomic fo...
AbstractAlthough the mechanical behavior of tendon and bone has been studied for decades, there is s...
Collagen is a key component of the extracellular matrix and is the most abundant protein in vertebra...
abstract: Mechanical interactions between cells and their microenvironment dictate cell phenotype an...
The atomic force microscope (AFM) is a probe-based microscope that uses nanoscale and structural ima...
The ability to characterize the microscale mechanical properties of biological materials has the pot...
Biosensors are aimed at detecting tiny physical and chemical stimuli in biological systems. Physical...
The function of cells is strongly determined by the properties of their extracellular microenvironme...
AbstractThe spatial and temporal changes of the mechanical properties of living cells reflect comple...
Abstract of the Nature Protocols Publication:Mammalian cells sense and react to the mechanics of the...
Atomic force microscope (AFM) has emerged as a powerful tool in the last two decades to study biolog...
As extracellular matrix (ECM) nano-characteristics play a crucial role in cell behavior, including c...
The mechanical properties of living cells and tissues are important for a variety of functional proc...
[EN] High-speed atomic force microscopy (AFM) enabled the imaging of protein interactions with milli...
Type I collagen, a fundamental extracellular matrix (ECM) component, is pivotal in maintaining tissu...
Scanning probe microscopy (SPM) has been in use for 30 years, and the form of SPM known as atomic fo...
AbstractAlthough the mechanical behavior of tendon and bone has been studied for decades, there is s...
Collagen is a key component of the extracellular matrix and is the most abundant protein in vertebra...
abstract: Mechanical interactions between cells and their microenvironment dictate cell phenotype an...
The atomic force microscope (AFM) is a probe-based microscope that uses nanoscale and structural ima...
The ability to characterize the microscale mechanical properties of biological materials has the pot...
Biosensors are aimed at detecting tiny physical and chemical stimuli in biological systems. Physical...
The function of cells is strongly determined by the properties of their extracellular microenvironme...
AbstractThe spatial and temporal changes of the mechanical properties of living cells reflect comple...
Abstract of the Nature Protocols Publication:Mammalian cells sense and react to the mechanics of the...