Bonding mechanisms at the interface of ceramic prosthetic materials
Explore this paper's citation graph
Summary
A theoretical model to explain the interfacial bonding is based upon in-vitro studies of glass-ceramic solubility in interfacial hydroxyapatite crystallization mechanisms, compared with in- vivo rat femur implant histology and ultrastructure results.
- Type
- article
- Published
- 1971-11-01
- Cited by
- 3,131
- References
- 7
- OpenAlex
- https://openalex.org/W2114200005
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:137078543
Keywords
Materials science, Ceramic, Crystallization, Biomaterial, Composite material
References
- The organization and polymerization of bone and dentin collagens.
- THE EFFECTS ON BONE OF THE PRESENCE OF METALS; BASED UPON ELECTROLYSIS: AN EXPERIMENTAL STUDY
- Reaction of Bone to Various Metals
- Intermediate States in the Precipitation of Hydroxyapatite
- Elements of X-ray crystallography
- DIVISION OF BIOPHYSICS: KINETICS AND MECHANISM OF CONVERSION OF NONCRYSTALLINE CALCIUM PHOSPHATE TO CRYSTALLINE HYDROXYAPATITE*
- The Mechanisms of chemical reaction between silicate glass and attacking agents: Part 1. Electrophilic and nucleophilic mechanisms of attack
Cited by
- Acute nephrotoxicity as an adverse effect after intraperitoneal injection of massive amounts of bioactive ceramic powders in mice and rats.
- Reactivity of a wollastonite-tricalcium phosphate Bioeutectic ceramic in human parotid saliva.
- Reconstruction of orbital floor fractures using bioactive glass.
- Apatite formation on dental ceramics modified by a bioactive glass.
- Applicazione della tecnologia sol-gel: sintesi di un materiale ibrido biocompatibile e studio delle proprietà spettroscopiche ed elettrochimiche del citocromo c incapsulato in un bio sol-gel
- Potential of biomimetic surfaces to promote in vitro osteoblast-like cell differentiation.
- Effect of magnesia on the degradability and bioactivity of sol-gel derived SiO2-CaO-MgO-P2O5 system glasses.
- Effects of CaO/P2O5 ratio on the structure and elastic properties of SiO2–CaO–Na2O–P2O5 bioglasses
- Bioactive glass/polymer composite scaffolds mimicking bone tissue.
- 87Sr solid-state NMR as a structurally sensitive tool for the investigation of materials: antiosteoporotic pharmaceuticals and bioactive glasses.
- A unified in vitro evaluation for apatite-forming ability of bioactive glasses and their variants
- Silicates in orthopedics and bone tissue engineering materials.
- Bioactivity and fluoride release of strontium and fluoride modified Biodentine.
- Mechanical properties, structure, bioactivity and cytotoxicity of bioactive Na-Ca-Si-P-O-(N) glasses.
- Gelatin coating increases in vivo bone formation capacity of three‐dimensional 45S5 bioactive glass‐based crystalline scaffolds
- Caractérisation par micro-faisceau d'ions des réactions physico-chimiques induites in vitro par des verres bioactifs nanostructurés élaborés par la méthode sol-gel
- Localized mechanical deformation and dissolution of 45S5 bioglass
- Insight into the impingement of different sodium precursors on structural, biocompatible, and hemostatic properties of bioactive materials.
- Primary bone-derived cell colonization of unconditioned and pre-conditioned Bioglass 45S5 surfaces in vitro
- Development and characterisation of calcium phosphate glasses and glass-ceramics containing fluorine and titanium
Related papers
- Human Cell Culture and Characterization of Cell/Biomaterial Interface
- Biochemical changes on the repair of surgical bone defects grafted with biphasic synthetic micro-granular HA + β-tricalcium phosphate induced by laser and LED phototherapies assessed by Raman spectroscopy
- Alteration of polymorphic selectivity through different crystallization mechanisms occurring in the same crystallization solution.
- Biochemical changes on the repair of surgical bone defects grafted with biphasic synthetic micro-granular HA + β-tricalcium phosphate induced by laser and LED phototherapies and assessed by Raman spectroscopy
- In Vivo Mineral Composition Evolution of a Synthetic CaCO3 Aragonite Used as Biomaterial for Osseous Substitution
- New progress in research on crystallization technology
- Studies of the Crystallization Dynamics of Na_2O-CaO-Al_2O_3-SiO_2 Glass-Ceramics
- Growth behavior, morphology and properties of lithium aluminosilicate glass ceramics with different amount of CaO, MgO and TiO2 additive