Processing and properties of hydroxyapatite-based biomaterials for use as hard tissue replacement implants
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Summary
The microstructurally controlled HAp ceramics such as fibers/whiskers-reinforced HAp, fibrous HAp- reinforced polymers, or biomimetically fabricated HAp/collagen composites seem to be the most suitable ceramic materials for the future hard tissue replacement implants.
- Type
- article
- Published
- 1998-01-01
- Cited by
- 1,945
- References
- 335
- OpenAlex
- https://openalex.org/W2127119921
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:136695111
Keywords
Materials science, Whiskers, Ceramic, Composite material, Hard tissue
References
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- Pressure Sintering of Apatite-Collagen Composite
- Control of pore geometry on influencing the mechanical property of porous hydroxyapatite bioceramic
- Biomaterial aspects of Interpore-200 porous hydroxyapatite.
- Biomedical materials and devices
- Biomaterials and Biomechanics 1983: Eds. P. Ducheyne, G. Van der Perre and A.E. Aubert Elsevier. Amsterdam, 1984, pp 480, $100/Dfl. 260
- Processing, characterisation, and evaluation of hydroxyapatite reinforced polyethylene composites
- Handbook of Composites
- Biomaterials : an interfacial approach
- Advances in materials science and implant orthopedic surgery
- Ceramic processing science and technology
- Inorganic phosphate materials
- Biomimetic Materials Chemistry
- International encyclopedia of composites
- 습식법으로 제조한 수산화아프타이트의 침전과 그 분말에 대한 Ca/P 몰비의 영향
- Bioceramics: Materials and Applications II
- Structure and chemistry of the apatites and other calcium orthophosphates
Cited by
- Effects of fiber length and volume fraction on the reinforcement of calcium phosphate cement
- Evaluation of hot-pressed hydroxyapatite/poly-L-lactide composite biomaterial characteristics.
- Porous hydroxyapatite ceramics of bi-modal pore size distribution
- Mise en forme d'apatites nanocristallines : céramiques et ciments
- Hydroxyapatite and Hydroxyapatite-Based Ceramics
- Osteoblast adhesion to functionally graded hydroxyapatite coatings doped with silver.
- Superelasticity and compression behavior of porous TiNi alloys produced using Mg spacers.
- Bioactive behavior of silicon substituted calcium phosphate based bioceramics for bone regeneration.
- Microwave hydrothermal transformation of amorphous calcium carbonate nanospheres and application in protein adsorption.
- The effect of simulating body fluid on the structural properties of hydroxyapatite synthesized in the presence of citric acid
- Fabrication and characterization of hydroxyapatite reinforced with 20 vol % Ti particles for use as hard tissue replacement
- Self‐setting kinetics of new type calcium phosphate bioactive bone cement: a thermokinetics study
- Preparation and characterisation of tri-calcium phosphate scaffolds with tunnel-like macro-pores for bone tissue engineering
- Effect of hydrolysis on the phase evolution of water-based sol–gel hydroxyapatite and its application to bioactive coatings
- Tape casting of porous hydroxyapatite ceramics
- A critical investigation into the spray-drying of hydroxyapatite powder for thermal spray applications
- Metallic phosphates in biomedical applicatios : development, chemistry and structure
- Structural characterisation of apatite-like materials
- Strength enhancement of porous hydroxyapatite ceramics by polymer impregnation
- Investigation of Phase Evolution During the Thermochemical Synthesis of Tricalcium Phosphate
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