AbstractHuman enamel is a typical hierarchical mineralized tissue with a two-level composite structure. To date, few studies have focused on how the mechanical behaviour of this tissue is affected by both the rod orientation at the microscale and the preferred orientation of mineral crystallites at the nanoscale. In this study, wide-angle X-ray scattering was used to determine the internal lattice strain response of human enamel samples (with differing rod directions) as a function of in situ uniaxial compressive loading. Quantitative stress distribution evaluation in the birefringent mounting epoxy was performed in parallel using photoelastic techniques. The resulting experimental data was analysed using an advanced multiscale Eshelby incl...
Tooth enamel is the hardest tissue in the human body and is directly responsible for dental function...
Tooth enamel is the hardest tissue in the human body and is directly responsible for dental function...
Human dental tissues are fascinating nano-structured hierarchical materials that combine organic and...
AbstractHuman enamel is a typical hierarchical mineralized tissue with a two-level composite structu...
Human enamel is a typical hierarchical mineralized tissue with a two-level composite structure. To d...
AbstractHuman enamel is a hierarchical mineralized tissue with a two-level composite structure. Few ...
Human enamel is a hierarchical mineralized tissue with a two-level composite structure. Few studies ...
Human teeth consist of enamel, dentine and cementum, hierarchical mineralised tissues with a two-lev...
The relationship between the ultrastructure of human enamel and its mechanical behaviour is studied ...
AbstractHuman dentine is a hierarchical mineralized tissue with a two-level composite structure, wit...
Human dentine is a hierarchical mineralized tissue with a two-level composite structure, with tubule...
Human dentine is a hierarchical mineralized tissue with a two-level composite structure, with tubule...
AbstractDental enamel is a highly anisotropic and heterogeneous material, which exhibits an optimal ...
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...
Tooth enamel is the hardest tissue in the human body and is directly responsible for dental function...
Tooth enamel is the hardest tissue in the human body and is directly responsible for dental function...
Human dental tissues are fascinating nano-structured hierarchical materials that combine organic and...
AbstractHuman enamel is a typical hierarchical mineralized tissue with a two-level composite structu...
Human enamel is a typical hierarchical mineralized tissue with a two-level composite structure. To d...
AbstractHuman enamel is a hierarchical mineralized tissue with a two-level composite structure. Few ...
Human enamel is a hierarchical mineralized tissue with a two-level composite structure. Few studies ...
Human teeth consist of enamel, dentine and cementum, hierarchical mineralised tissues with a two-lev...
The relationship between the ultrastructure of human enamel and its mechanical behaviour is studied ...
AbstractHuman dentine is a hierarchical mineralized tissue with a two-level composite structure, wit...
Human dentine is a hierarchical mineralized tissue with a two-level composite structure, with tubule...
Human dentine is a hierarchical mineralized tissue with a two-level composite structure, with tubule...
AbstractDental enamel is a highly anisotropic and heterogeneous material, which exhibits an optimal ...
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...
Tooth enamel is the hardest tissue in the human body and is directly responsible for dental function...
Tooth enamel is the hardest tissue in the human body and is directly responsible for dental function...
Human dental tissues are fascinating nano-structured hierarchical materials that combine organic and...