Three commercially available artificial bone substitutes with different compositions, hydroxyapatite (HAp; Neobone®), carbonate apatite (CO3Ap; Cytrans®), and β-tricalcium phosphate (β-TCP; Cerasorb®), were compared with respect to their physical properties and tissue response to bone, using hybrid dogs. Both Neobone® (HAp) and Cerasorb® (β-TCP) were porous, whereas Cytrans® (CO3Ap) was dense. Crystallite size and specific surface area (SSA) of Neobone® (HAp), Cytrans® (CO3Ap), and Cerasorb® (β-TCP) were 75.4 ± 0.9 nm, 30.8 ± 0.8 nm, and 78.5 ± 7.5 nm, and 0.06 m2/g, 18.2 m2/g, and 1.0 m2/g, respectively. These values are consistent with the fact that both Neobone&...
\u3cp\u3eBone repair is a multi-dimensional process that requires osteogenic cells, an osteoconducti...
PubMedID: 25491275Aims The aim of this study was to compare the de novo bone formation ability and o...
Bone repair is a multi-dimensional process that requires osteogenic cells, an osteoconductive matrix...
Three commercially available artificial bone substitutes with different compositions, hydroxyapatite...
Because of their bioactive properties and chemical similarity to the inorganic component of bone, ca...
Improvement of synthetic bone graft substitutes as suitable alternatives to a patient's own bone gra...
Carbonated apatite ceramics, with a composition similar to that of bone mineral, are potentially int...
Bone apatite is not composed of pure hydroxyapatite (HAp), but contains calcium, phosphoric acid, hy...
Various synthetic bone substitutes have been developed to reconstruct the bony defects that clinicia...
Bone is the second most frequently transplanted tissue in humans. Autogenous bone, of which a limite...
Various synthetic materials were developed to be used for implant dentistry and periodontal treatmen...
Since bone apatite is a carbonate apatite containing carbonate in an apatitic structure, carbonate c...
Physicochemical modification could implement synthetic materials into osteoinductive materials, whic...
Objective: Moldable in situ self-stabilizing and hardening bone graft materials facilitate handling ...
Bone repair is a multi-dimensional process that requires osteogenic cells, an osteoconductive matrix...
\u3cp\u3eBone repair is a multi-dimensional process that requires osteogenic cells, an osteoconducti...
PubMedID: 25491275Aims The aim of this study was to compare the de novo bone formation ability and o...
Bone repair is a multi-dimensional process that requires osteogenic cells, an osteoconductive matrix...
Three commercially available artificial bone substitutes with different compositions, hydroxyapatite...
Because of their bioactive properties and chemical similarity to the inorganic component of bone, ca...
Improvement of synthetic bone graft substitutes as suitable alternatives to a patient's own bone gra...
Carbonated apatite ceramics, with a composition similar to that of bone mineral, are potentially int...
Bone apatite is not composed of pure hydroxyapatite (HAp), but contains calcium, phosphoric acid, hy...
Various synthetic bone substitutes have been developed to reconstruct the bony defects that clinicia...
Bone is the second most frequently transplanted tissue in humans. Autogenous bone, of which a limite...
Various synthetic materials were developed to be used for implant dentistry and periodontal treatmen...
Since bone apatite is a carbonate apatite containing carbonate in an apatitic structure, carbonate c...
Physicochemical modification could implement synthetic materials into osteoinductive materials, whic...
Objective: Moldable in situ self-stabilizing and hardening bone graft materials facilitate handling ...
Bone repair is a multi-dimensional process that requires osteogenic cells, an osteoconductive matrix...
\u3cp\u3eBone repair is a multi-dimensional process that requires osteogenic cells, an osteoconducti...
PubMedID: 25491275Aims The aim of this study was to compare the de novo bone formation ability and o...
Bone repair is a multi-dimensional process that requires osteogenic cells, an osteoconductive matrix...