Electron microscope images of twinned apatite bicrystals oriented along the [1120] crystallographic direction have been simulated for various experimental conditions, and the validity of the calculation has been checked. These images show a dark contrast line similar to the one observed experimentally in enamel and dentin crystals and therefore strongly suggest the presence of a twin plane parallel to the (1100) crystallographic planes, in these crystals. The presence of a twin boundary in teeth and bone crystals is of prime importance for the adsorption and the dissolution properties of the calcified tissues as a whole
Human tooth exhibits a structure of a mixture of inorganic hydroxyapatite nanocrystals and organic p...
The crystallites of rat incisor enamel resemble human enamel crystallites and high resolution lattic...
We have used synchrotron X-ray diffraction to study the texture and the change in lattice parameter ...
Electron microscope images of twinned apatite bicrystals oriented along the [1120] crystallographic ...
In a series of studies to investigate the basic structural features and characteristics of the biolo...
In a series of studies to investigate the structural features of the biological crystals, such as th...
In a series of studies to investigate the basic structural features and characteristics of the biolo...
The recent observation in parrotfish teeth of X-ray linear dichroism motivated an in-depth investiga...
In a series of studies to investigate the structural features of the biological crystals, using elec...
In a series of studies to investigate the structural features of biological crystals, using an elect...
The recent observation in parrotfish teeth of X-ray linear dichroism motivated an in-depth investiga...
Herein, we investigate human single hydroxyapatite crystals (enamel and dentine) by convergent-beam ...
In a series of studies to investigate the structural features of the biological crystals such as the...
Using polarizing microscopy the birefringence of the crystalline structure of enamel is colorful dem...
The internal crystalline structure of a human molar tooth has been non-destructively imaged in cross...
Human tooth exhibits a structure of a mixture of inorganic hydroxyapatite nanocrystals and organic p...
The crystallites of rat incisor enamel resemble human enamel crystallites and high resolution lattic...
We have used synchrotron X-ray diffraction to study the texture and the change in lattice parameter ...
Electron microscope images of twinned apatite bicrystals oriented along the [1120] crystallographic ...
In a series of studies to investigate the basic structural features and characteristics of the biolo...
In a series of studies to investigate the structural features of the biological crystals, such as th...
In a series of studies to investigate the basic structural features and characteristics of the biolo...
The recent observation in parrotfish teeth of X-ray linear dichroism motivated an in-depth investiga...
In a series of studies to investigate the structural features of the biological crystals, using elec...
In a series of studies to investigate the structural features of biological crystals, using an elect...
The recent observation in parrotfish teeth of X-ray linear dichroism motivated an in-depth investiga...
Herein, we investigate human single hydroxyapatite crystals (enamel and dentine) by convergent-beam ...
In a series of studies to investigate the structural features of the biological crystals such as the...
Using polarizing microscopy the birefringence of the crystalline structure of enamel is colorful dem...
The internal crystalline structure of a human molar tooth has been non-destructively imaged in cross...
Human tooth exhibits a structure of a mixture of inorganic hydroxyapatite nanocrystals and organic p...
The crystallites of rat incisor enamel resemble human enamel crystallites and high resolution lattic...
We have used synchrotron X-ray diffraction to study the texture and the change in lattice parameter ...