Fabrication of mechanically competent bioactive scaffolds is a great challenge in bone tissue engineering. In this paper, β-tricalcium phosphate (β-TCP) scaffolds were successfully fabricated by selective laser sintering combined with furnace sintering. Bioglass 45S5 was introduced in the process as liquid phase in order to improve the mechanical and biological properties. The results showed that sintering of β-TCP with the bioglass revealed some features of liquid phase sintering. The optimum amount of 45S5 was 5 wt %. At this point, the scaffolds were densified without defects. The fracture toughness, compressive strength and stiffness were 1.67 MPam1/2, 21.32 MPa and 264.32 MPa, respectively. Bone like apatite layer was formed and the st...
The implementation of a powder bed selective laser processing (PBSLP) technique for bioactive cerami...
Item does not contain fulltextHydroxyapatite (HAP) and tricalcium phosphate (TCP) are two very commo...
Bionanocomposites formed by combining biodegradable polymers and nanosized osteoconductive inorganic...
Bioactive glasses are promising materials for bone scaffolds due to their ability to assist in tissu...
Bioactive glasses are promising materials for bone scaffolds due to their ability to assist in tissu...
In this paper, the compressive strength and in vitro bioactivity of sintered 45S5 bioactive glass sc...
Recent advances in the field of biomaterials have led to the development of ceramic�matrix nanocom...
[[abstract]]Because of its outstanding characteristics, bioglass is considered a potential bone subs...
Bioactive glasses are more promising than biopolymers in fabricating scaffolds for bone tissue repa...
Bioactive glass is a synthetic material that reacts in vivo and forms an inorganic hydroxyapatite-li...
AbstractThis study presents a fabrication process of bone scaffold model with titanium biomedical ma...
The influence of using bioactive glass as a sintering aid in the production of tricalcium phosphate ...
This paper explores the use of selective laser sintering (SLS) for the generation of bone tissue eng...
CaO-Al2O3-SiO2 (CAS) as a liquid phase was introduced into hydroxyapatite (HAp) to prepare bone scaf...
13-93 glass is a third-generation bioactive material which accelerates the bone’s natural ability to...
The implementation of a powder bed selective laser processing (PBSLP) technique for bioactive cerami...
Item does not contain fulltextHydroxyapatite (HAP) and tricalcium phosphate (TCP) are two very commo...
Bionanocomposites formed by combining biodegradable polymers and nanosized osteoconductive inorganic...
Bioactive glasses are promising materials for bone scaffolds due to their ability to assist in tissu...
Bioactive glasses are promising materials for bone scaffolds due to their ability to assist in tissu...
In this paper, the compressive strength and in vitro bioactivity of sintered 45S5 bioactive glass sc...
Recent advances in the field of biomaterials have led to the development of ceramic�matrix nanocom...
[[abstract]]Because of its outstanding characteristics, bioglass is considered a potential bone subs...
Bioactive glasses are more promising than biopolymers in fabricating scaffolds for bone tissue repa...
Bioactive glass is a synthetic material that reacts in vivo and forms an inorganic hydroxyapatite-li...
AbstractThis study presents a fabrication process of bone scaffold model with titanium biomedical ma...
The influence of using bioactive glass as a sintering aid in the production of tricalcium phosphate ...
This paper explores the use of selective laser sintering (SLS) for the generation of bone tissue eng...
CaO-Al2O3-SiO2 (CAS) as a liquid phase was introduced into hydroxyapatite (HAp) to prepare bone scaf...
13-93 glass is a third-generation bioactive material which accelerates the bone’s natural ability to...
The implementation of a powder bed selective laser processing (PBSLP) technique for bioactive cerami...
Item does not contain fulltextHydroxyapatite (HAP) and tricalcium phosphate (TCP) are two very commo...
Bionanocomposites formed by combining biodegradable polymers and nanosized osteoconductive inorganic...