International audienceNanocrystalline calcium phosphate apatites are biomimetic compounds analogous to bone mineral and are at the origin of the bioactivity of most biomaterials used as bone substitutes. Their unique surface reactivity originates from the presence of a hydrated layer containing labile ions (mostly divalent ones). So the setup of 3D biocompatible apatite-based bioceramics exhibiting a high reactivity requests the development of «low» temperature consolidation processes such as spark plasma sintering (SPS), in order to preserve the characteristics of the hydrated nanocrystals. However, mechanical performances may still need to be improved for such nanocrystalline apatite bioceramics, especially in view of load-bearing applica...
AbstractSince hydroxyapatite-based materials have similar composition and crystallinity as natural c...
Hydroxyapatite (HA) exhibits several desirable characteristics, but it still lacks osteoinduction, w...
Since hydroxyapatite-based materials have similar composition and crystallinity as natural calcified...
Nanocrystalline calcium phosphate apatites are biomimetic compounds analogous to bone mineral and ar...
International audienceNanocrystalline apatites analogous to bone mineral are very promising material...
Biomimetic nanocrystalline apatites analogous to bone mineral can be prepared by different ways. The...
International audienceCalcium phosphates (CaP) such as biomimetic nanocrystalline apatite or amorpho...
Biomimetic nanocrystalline apatites (BNA) Ca10-x-Z(PO4)6-(HPO4)x(OH)2-x-2Z, (H2O)n were synthesized ...
International audienceVarious carbonated calcium phosphate powders were synthesized by aqueous preci...
L’hydroxyapatite est un biomatériau bioactif largement utilisé pour la réparation et la reconstructi...
Apatite containing bioceramic materials are considered to be potentially useful for replacement or r...
This study includes two interconnected parts. The first part describes the characterization of the n...
Accidents, surgery and disease often result in the use of biomimetic materials that can replace huma...
Non-stoichiometric nanocrystalline apatite powders are used to elaborate highly-bioactive biomateria...
AbstractSince hydroxyapatite-based materials have similar composition and crystallinity as natural c...
Hydroxyapatite (HA) exhibits several desirable characteristics, but it still lacks osteoinduction, w...
Since hydroxyapatite-based materials have similar composition and crystallinity as natural calcified...
Nanocrystalline calcium phosphate apatites are biomimetic compounds analogous to bone mineral and ar...
International audienceNanocrystalline apatites analogous to bone mineral are very promising material...
Biomimetic nanocrystalline apatites analogous to bone mineral can be prepared by different ways. The...
International audienceCalcium phosphates (CaP) such as biomimetic nanocrystalline apatite or amorpho...
Biomimetic nanocrystalline apatites (BNA) Ca10-x-Z(PO4)6-(HPO4)x(OH)2-x-2Z, (H2O)n were synthesized ...
International audienceVarious carbonated calcium phosphate powders were synthesized by aqueous preci...
L’hydroxyapatite est un biomatériau bioactif largement utilisé pour la réparation et la reconstructi...
Apatite containing bioceramic materials are considered to be potentially useful for replacement or r...
This study includes two interconnected parts. The first part describes the characterization of the n...
Accidents, surgery and disease often result in the use of biomimetic materials that can replace huma...
Non-stoichiometric nanocrystalline apatite powders are used to elaborate highly-bioactive biomateria...
AbstractSince hydroxyapatite-based materials have similar composition and crystallinity as natural c...
Hydroxyapatite (HA) exhibits several desirable characteristics, but it still lacks osteoinduction, w...
Since hydroxyapatite-based materials have similar composition and crystallinity as natural calcified...