Bone tissue engineering has gained much attention in recent years. A key requirement in this field is the development of scaffold structures, on which cells adhere. This can be done by fabricating scaffolds by direct procedures like 3D-printing or by indirect procedures like casting. With the 3D-printing process different structures were build up by using hydroxyapatite powder (HA) and a special binder material. Afterwards the printed 3D structures were sintered. For the casting process molds have been made of different resins by stereolithography and other processes using polymers and waxes. These structures were filled by a suspension of HA. By heating the resulting polymer/ceramic composite to a specific temperature it is possible...
The adequate regeneration of large bone defects is still a major problem in orthopaedic surgery. Syn...
Synthesised bone replacement scaffolds provide the possibility to individually tailor properties, ov...
In this study, bone tissue engineered scaffolds fabricated via powder-based 3D printing from hydroxy...
Bone tissue engineering has gained much attention in recent years. A key requirement in this field ...
Item does not contain fulltextHydroxyapatite (HAP) and tricalcium phosphate (TCP) are two very commo...
The design of the bone scaffolds changes and develops with the developing technology and production ...
Bioceramic scaffolds with fully controlled macroporosity are highly desired materials for bone subst...
Unlike traditional stochastic scaffold fabrication techniques, additive manufacturing (AM) can be us...
Abstract Background The primary objective of Tissue engineering is a regeneration or replacement of ...
AbstractThe fundamentally different features of Rapid prototyping (RP) from that of conventional sin...
A variety of ceramics and polymers exists that can be used as bone substitute materials with desirab...
Techniques to restore and replace bones in large fractures are still a major clinical need in the f...
This investigation describes the production and characterization of calcium phosphate scaffolds with...
Hard tissues, such as bone and teeth, are natural composites of collagen nanofibers that are reinfor...
Calcium phosphate ceramics, commonly applied as bone graft substitutes, are a natural choice of scaf...
The adequate regeneration of large bone defects is still a major problem in orthopaedic surgery. Syn...
Synthesised bone replacement scaffolds provide the possibility to individually tailor properties, ov...
In this study, bone tissue engineered scaffolds fabricated via powder-based 3D printing from hydroxy...
Bone tissue engineering has gained much attention in recent years. A key requirement in this field ...
Item does not contain fulltextHydroxyapatite (HAP) and tricalcium phosphate (TCP) are two very commo...
The design of the bone scaffolds changes and develops with the developing technology and production ...
Bioceramic scaffolds with fully controlled macroporosity are highly desired materials for bone subst...
Unlike traditional stochastic scaffold fabrication techniques, additive manufacturing (AM) can be us...
Abstract Background The primary objective of Tissue engineering is a regeneration or replacement of ...
AbstractThe fundamentally different features of Rapid prototyping (RP) from that of conventional sin...
A variety of ceramics and polymers exists that can be used as bone substitute materials with desirab...
Techniques to restore and replace bones in large fractures are still a major clinical need in the f...
This investigation describes the production and characterization of calcium phosphate scaffolds with...
Hard tissues, such as bone and teeth, are natural composites of collagen nanofibers that are reinfor...
Calcium phosphate ceramics, commonly applied as bone graft substitutes, are a natural choice of scaf...
The adequate regeneration of large bone defects is still a major problem in orthopaedic surgery. Syn...
Synthesised bone replacement scaffolds provide the possibility to individually tailor properties, ov...
In this study, bone tissue engineered scaffolds fabricated via powder-based 3D printing from hydroxy...