Tooth enamel is the stiffest tissue in the human body with a well-organized microstructure. Developmental diseases, such as enamel hypomineralisation, have been reported to cause marked reduction in the elastic modulus of enamel and consequently impair dental function. We produce evidence, using site-specific transmission electron microscopy (TEM), of difference in microstructure between sound and hypomineralised enamel. Built upon that, we develop a mechanical model to explore the relationship of the elastic modulus of the mineral-protein composite structure of enamel with the thickness of protein layers and the direction of mechanical loading. We conclude that when subject to complex mechanical loading conditions, sound enamel exhibits co...
The microstructure of enamel like most biological tissues has a hierarchical structure which determi...
Teeth are important in the survival of humans and animals and have functions in mastication, estheti...
Atomic force microscopy (AFM) combined with nanoindentation technique was used to definitely, site-s...
Tooth enamel is the stiffest tissue in the human body with a well-organized microstructure. Developm...
Tooth enamel is the hardest tissue in the human body with a complex hierarchical structure. Enamel h...
Developmental defects in dental enamel pose significant clinical challenges which have highlighted o...
Tooth enamel is the hardest tissue in the human body and is directly responsible for dental function...
The relationship between the ultrastructure of human enamel and its mechanical behaviour is studied ...
Human enamel is a hierarchical mineralized tissue with a two-level composite structure. Few studies ...
Molar-incisor-hypomineralisation (MIH), one of the major developmental defects in dental enamel, is ...
Tooth enamel is the hardest tissue in the human body and is directly responsible for dental function...
The structure-mechanical properties relationship of dental enamel (made of apatite fibers and a smal...
AbstractHuman enamel is a hierarchical mineralized tissue with a two-level composite structure. Few ...
The anisotropy and gradient of the elastic modulus and the hardness of teeth were investigated by me...
The microstructure of enamel like most biological tissues has a hierarchical structure which determi...
The microstructure of enamel like most biological tissues has a hierarchical structure which determi...
Teeth are important in the survival of humans and animals and have functions in mastication, estheti...
Atomic force microscopy (AFM) combined with nanoindentation technique was used to definitely, site-s...
Tooth enamel is the stiffest tissue in the human body with a well-organized microstructure. Developm...
Tooth enamel is the hardest tissue in the human body with a complex hierarchical structure. Enamel h...
Developmental defects in dental enamel pose significant clinical challenges which have highlighted o...
Tooth enamel is the hardest tissue in the human body and is directly responsible for dental function...
The relationship between the ultrastructure of human enamel and its mechanical behaviour is studied ...
Human enamel is a hierarchical mineralized tissue with a two-level composite structure. Few studies ...
Molar-incisor-hypomineralisation (MIH), one of the major developmental defects in dental enamel, is ...
Tooth enamel is the hardest tissue in the human body and is directly responsible for dental function...
The structure-mechanical properties relationship of dental enamel (made of apatite fibers and a smal...
AbstractHuman enamel is a hierarchical mineralized tissue with a two-level composite structure. Few ...
The anisotropy and gradient of the elastic modulus and the hardness of teeth were investigated by me...
The microstructure of enamel like most biological tissues has a hierarchical structure which determi...
The microstructure of enamel like most biological tissues has a hierarchical structure which determi...
Teeth are important in the survival of humans and animals and have functions in mastication, estheti...
Atomic force microscopy (AFM) combined with nanoindentation technique was used to definitely, site-s...