Bone bonding behavior of three kinds of apatite containing glass ceramics.
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Summary
Direct bonding between the materials and the bone for all the three materials was revealed and SEM-EPMA showed that Si and Mg content decreased, Ca content did not change, and P content increased at the reaction zone between all three glass ceramics and bone.
- Type
- article
- Published
- 1986-11-01
- Cited by
- 174
- References
- 7
- OpenAlex
- https://openalex.org/W2047722298
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:12928868
Keywords
Wollastonite, Materials science, Fluorapatite, Apatite, Glass-ceramic
References
- Biomechanical evaluation of bone-porous material interfaces.
- Synthesis and fabrication of β-tricalcium phosphate (whitlockite) ceramics for potential prosthetic applications
- Surface staining of sawed sections of undecalcified bone containing alloplastic implants.
- Calcium phosphate ceramics as hard tissue prosthetics.
- Difference of bond bonding behavior among surface active glasses and sintered apatite.
- Fixation of porous titanium implants in cortical bone enhanced by electrical stimulation.
- A new glass-ceramic for bone replacement: evaluation of its bonding to bone tissue.
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- Bioceramics: material characteristics versus in vivo behavior.
- Apatite-forming ability of glass-ceramic apatite–wollastonite – polyethylene composites: effect of filler content
- Evaluation of in vitro bioactivity and biocompatibility of Bioglass®-reinforced polyethylene composite
- Biocompatibility of submicron Bioglass® powders obtained by a top-down approach.
- Osteoblast reaction at the interface between surface-active materials and bone in vivo: a study using in situ hybridization.
- Osteoconductivity and bone-bonding strength of high- and low-viscous bioactive bone cements.
- Effect of calcium salt content in the poly(epsilon-caprolactone)/silica nanocomposite on the nucleation and growth behavior of apatite layer.
- Bioactive glass-ceramic containing crystalline apatite and wollastonite initiates biomineralization in bone cell cultures
- Interfacial tensile strength between polymethylmethacrylate-based bioactive bone cements and bone.
- SEM study of surface alterations of bioactive glasses and glass--ceramics in a bony implantation bed.
- In vitro osteoconductivity evaluation of alumina treated hydrothermally in CaCl2 solution
- Differences in ceramic-bone interface between surface-active ceramics and resorbable ceramics: a study by scanning and transmission electron microscopy.
- Bioactive Bone Cement Based on CaO─SiO2─P2O5 Glass
- Apatite formation on the surface of Ceravital-type glass-ceramic in the body.
- Bone-bonding ability of P2O5-free CaO.SiO2 glasses.
- Preparation of diopside with apatite-forming ability by sol–gel process using metal alkoxide and metal salts
- Determination of avrami parameters of hydroxyapatite and β-wollastonite in bioactive phosphor—Silica glasses
- Bioactive bone cement: effect of surface curing properties on bone-bonding strength.
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