Hard tissues (e.g., bone, enamel, dentin) in vertebrates perform various and different functions, from sustaining the body to haematopoiesis. Such complex and hierarchal tissue is actually a material composite whose static and dynamic properties are controlled by the subtle physical and chemical interplay between its components, collagen (main organic part) and hydroxylapatite-like mineral. The knowledge needed to fully understand the properties of bony and dental tissues and to develop specific applicative biomaterials (e.g., fillers, prosthetics, scaffolds, implants, etc.) resides mostly at the atomic scale. Among the different methods to obtains such detailed information, atomistic computer simulations (in silico) have proven to be both ...
IntroductionFormation of hydroxyapatite in bone, dentin, and enamel occurs at restricted molecular s...
International audienceThis research presents a new modelling procedure which allows the computation ...
Bone can achieve high strength and toughness simultaneously through its composite structure and mult...
Hard tissues (e.g., bone, enamel, dentin) in vertebrates perform various and different functions, fr...
Hard biomaterials such as bone, dentin, and nacre show remarkable mechanical performance and serve a...
Bone at the nanoscale consists of type I collagen and hydroxyapatite (HAP). Type I collagen and HAP ...
Bone is a highly hierarchical complex structure that consists of organic and mineral components repr...
The present work focuses on the physicochemical characterization of selected mineral-based biomateri...
Since it was first discovered that the main component of the mineral phase of bone, dentine and enam...
Bone has a hierarchical structure based on the mineralized fibril, an organic matrix envisaging col...
Bone, as a mineralized composite of inorganic (mostly carbonated hydroxyapatite) and organic (mainly...
Calcium phosphate apatites offer outstanding biological adaptability that can be attributed to their...
Bone is a hierarchical biological composite made of a mineral component (hydroxyapatite crystals) an...
In the present Chapter it has been explained how crucial the computational techniques arewhen applie...
Mineralization of bone and teeth involves interactions between biomolecules and hydroxyapatite. Asso...
IntroductionFormation of hydroxyapatite in bone, dentin, and enamel occurs at restricted molecular s...
International audienceThis research presents a new modelling procedure which allows the computation ...
Bone can achieve high strength and toughness simultaneously through its composite structure and mult...
Hard tissues (e.g., bone, enamel, dentin) in vertebrates perform various and different functions, fr...
Hard biomaterials such as bone, dentin, and nacre show remarkable mechanical performance and serve a...
Bone at the nanoscale consists of type I collagen and hydroxyapatite (HAP). Type I collagen and HAP ...
Bone is a highly hierarchical complex structure that consists of organic and mineral components repr...
The present work focuses on the physicochemical characterization of selected mineral-based biomateri...
Since it was first discovered that the main component of the mineral phase of bone, dentine and enam...
Bone has a hierarchical structure based on the mineralized fibril, an organic matrix envisaging col...
Bone, as a mineralized composite of inorganic (mostly carbonated hydroxyapatite) and organic (mainly...
Calcium phosphate apatites offer outstanding biological adaptability that can be attributed to their...
Bone is a hierarchical biological composite made of a mineral component (hydroxyapatite crystals) an...
In the present Chapter it has been explained how crucial the computational techniques arewhen applie...
Mineralization of bone and teeth involves interactions between biomolecules and hydroxyapatite. Asso...
IntroductionFormation of hydroxyapatite in bone, dentin, and enamel occurs at restricted molecular s...
International audienceThis research presents a new modelling procedure which allows the computation ...
Bone can achieve high strength and toughness simultaneously through its composite structure and mult...