Tooth enamel is the hardest tissue in the human body and is directly responsible for dental function. Due to its non-regenerative nature, enamel is unable to heal and repair itself biologically after damage. We hypothesized that with its unique microstructure, enamel possesses excellent resistance to contact-induced damage, regardless of loading direction. By combining instrumented indentation tests with microstructural analysis, we report that enamel can absorb indentation energy through shear deformation within its protein layers between apatite crystallites. Moreover, a near-isotropic inelastic response was observed when we analyzed indentation data in directions either perpendicular or parallel to the path of enamel prisms. An “effectiv...
Thesis (Ph.D.)--University of Washington, 2023Tooth enamel, a tissue recognized for its ability to ...
Tooth enamel is the stiffest tissue in the human body with a well-organized microstructure. Developm...
The enamel of human teeth is generally regarded as a brittle material with low fracture toughness. C...
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...
Enamel is the hardest and most resilient tissue in the human body. Enamel includes morphologically a...
Objectives/Methods: From a materials scientist's perspective, dental materials used for tooth r...
Objective: The purpose of this study was to determine the crack resistance behavior (KR) of human en...
Enamel is the hardest and most resilient tissue in the human body. Enamel includes morphologically a...
Objective. Tooth enamel has unsurpassed hardness and stiffness among mammalian tissue structures. Su...
Objectives/Methods: From a materials scientist's perspective, dental materials used for tooth repair...
The microstructure of enamel like most biological tissues has a hierarchical structure which determi...
Tooth enamel is the hardest tissue in the human body with a complex hierarchical structure. Enamel h...
The microstructure of enamel like most biological tissues has a hierarchical structure which determi...
This paper presents results from investigating indentation impressions on human enamel under micro-h...
Thesis (Ph.D.)--University of Washington, 2023Tooth enamel, a tissue recognized for its ability to ...
Tooth enamel is the stiffest tissue in the human body with a well-organized microstructure. Developm...
The enamel of human teeth is generally regarded as a brittle material with low fracture toughness. C...
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...
Enamel is the hardest and most resilient tissue in the human body. Enamel includes morphologically a...
Objectives/Methods: From a materials scientist's perspective, dental materials used for tooth r...
Objective: The purpose of this study was to determine the crack resistance behavior (KR) of human en...
Enamel is the hardest and most resilient tissue in the human body. Enamel includes morphologically a...
Objective. Tooth enamel has unsurpassed hardness and stiffness among mammalian tissue structures. Su...
Objectives/Methods: From a materials scientist's perspective, dental materials used for tooth repair...
The microstructure of enamel like most biological tissues has a hierarchical structure which determi...
Tooth enamel is the hardest tissue in the human body with a complex hierarchical structure. Enamel h...
The microstructure of enamel like most biological tissues has a hierarchical structure which determi...
This paper presents results from investigating indentation impressions on human enamel under micro-h...
Thesis (Ph.D.)--University of Washington, 2023Tooth enamel, a tissue recognized for its ability to ...
Tooth enamel is the stiffest tissue in the human body with a well-organized microstructure. Developm...
The enamel of human teeth is generally regarded as a brittle material with low fracture toughness. C...