Surface topography, microstructure, and micromechanical properties of human lamellar bone were characterized by atomic force microscopy and nanoindentation. The lamellar bone surfaces were prepared by two different methods: microtome sectioning and mechanical polishing. The lamellar bone surfaces prepared by mechanical polishing revealed that thin lamellae formed depressions approximately 200 nm deep, whereas the surfaces prepared by microtome sectioning were flat. Atomic force microscopy surface topographic images at higher magnification showed differences between thick and thin lamellae in polished samples, but these differences were less pronounced in microtomed samples. Roughness measurements confirmed that there was a significant diffe...
Force mapping of biological tissues via atomic force microscopy (AFM) probes the mechanical properti...
The hierarchical structure of bone and intrinsic material properties of its two primary constituents...
Articulating cartilage wear plays an important role in cartilage degeneration and osteoarthritis (OA...
Surface topography, microstructure, and micromechanical properties of human lamellar bone were chara...
To our knowledge, this study applied for the first time a recently developed combination of atomic f...
To our knowledge, this study applied for the first time a recently developed combination of atomic f...
This review is summarizing the results obtained from atomic force microscopy (AFM) and nanoindentati...
Scanning probe microscopy (SPM) has been in use for 30 years, and the form of SPM known as atomic fo...
Atomic force microscopy (AFM) is a superb tool for imaging of bone ultrastructure in a close to phys...
On the basis of the suggestion that bone nanostructure bears tissue age information and may reflect ...
Despite general belief that the mechanical properties of bone material contribute to whole bone stre...
We have used the atomic force microscope (AFM) to measure the local rigidity modulus at points on th...
Microindentation in bone is a micromechanical testing technique routinely used to extract material p...
International audience12 Hide Figures Abstract Introduction Methods Results Discussion Acknowledgmen...
Mineralized collagen fibrils(MCFs)are the fundamental building blocks that contribute to the extraor...
Force mapping of biological tissues via atomic force microscopy (AFM) probes the mechanical properti...
The hierarchical structure of bone and intrinsic material properties of its two primary constituents...
Articulating cartilage wear plays an important role in cartilage degeneration and osteoarthritis (OA...
Surface topography, microstructure, and micromechanical properties of human lamellar bone were chara...
To our knowledge, this study applied for the first time a recently developed combination of atomic f...
To our knowledge, this study applied for the first time a recently developed combination of atomic f...
This review is summarizing the results obtained from atomic force microscopy (AFM) and nanoindentati...
Scanning probe microscopy (SPM) has been in use for 30 years, and the form of SPM known as atomic fo...
Atomic force microscopy (AFM) is a superb tool for imaging of bone ultrastructure in a close to phys...
On the basis of the suggestion that bone nanostructure bears tissue age information and may reflect ...
Despite general belief that the mechanical properties of bone material contribute to whole bone stre...
We have used the atomic force microscope (AFM) to measure the local rigidity modulus at points on th...
Microindentation in bone is a micromechanical testing technique routinely used to extract material p...
International audience12 Hide Figures Abstract Introduction Methods Results Discussion Acknowledgmen...
Mineralized collagen fibrils(MCFs)are the fundamental building blocks that contribute to the extraor...
Force mapping of biological tissues via atomic force microscopy (AFM) probes the mechanical properti...
The hierarchical structure of bone and intrinsic material properties of its two primary constituents...
Articulating cartilage wear plays an important role in cartilage degeneration and osteoarthritis (OA...