The ability to control the architecture and strength of a bone tissue engineering scaffold is critical to achieve a harmony between the scaffold and the host tissue. Rapid prototyping (RP) technique is applied to tissue engineering to satisfy this need and to create a scaffold directly from the scanned and digitized image of the defect site. Design and construction of complex structures with different shapes and sizes, at micro and macro scale, with fully interconnected pore structure and appropriate mechanical properties are possible by using RP techniques. In this study, RP was used for the production of poly(e-caprolactone) (PCL) scaffolds. Scaffolds with four different architectures were produced by using different configuration...
Fused deposition modeling has been used to fabricate three-dimensional (3D) scaffolds for tissue eng...
Interconnected porosity is critical to the design of regenerative scaffolds, as it permits cell migr...
The hypothesis of this study was that the extent of bone regeneration could be enhanced by using sca...
The ability to control the architecture and strength of a bone tissue engineering scaffold is critic...
Scaffold architecture and composition are crucial parameters determining the initial cell spatial di...
The ability to control the architecture and strength of a bone tissue engineering scaffold is critic...
The geometry of bone scaffolds plays a crucial role in bone tissue regeneration. This architecture, ...
Poly-ε-caprolactone (PCL) is a promising synthetic material in bone tissue engineering (BTE). Partic...
The geometry of bone scaffolds plays a crucial role in bone tissue regeneration. This architecture, ...
Scaffolds produced by rapid prototyping (RP) techniques have proved their value for tissue engineeri...
Successes in scaffold guided tissue engineering require scaffolds to have specific macroscopic geom...
Rapid prototyping techniques (RP) hold great promise for designing 3-dimensional (3-D) regular and o...
A manufacturing process for sheet-based stacked scaffolds (SSCs) based on laser-cutting (LC) was dev...
Most bone tissue engineering research uses porous three-dimensional (3D) scaffolds for cell seeding....
Defects in bone are a constant and serious problem. They occur as a result of high energy trauma, co...
Fused deposition modeling has been used to fabricate three-dimensional (3D) scaffolds for tissue eng...
Interconnected porosity is critical to the design of regenerative scaffolds, as it permits cell migr...
The hypothesis of this study was that the extent of bone regeneration could be enhanced by using sca...
The ability to control the architecture and strength of a bone tissue engineering scaffold is critic...
Scaffold architecture and composition are crucial parameters determining the initial cell spatial di...
The ability to control the architecture and strength of a bone tissue engineering scaffold is critic...
The geometry of bone scaffolds plays a crucial role in bone tissue regeneration. This architecture, ...
Poly-ε-caprolactone (PCL) is a promising synthetic material in bone tissue engineering (BTE). Partic...
The geometry of bone scaffolds plays a crucial role in bone tissue regeneration. This architecture, ...
Scaffolds produced by rapid prototyping (RP) techniques have proved their value for tissue engineeri...
Successes in scaffold guided tissue engineering require scaffolds to have specific macroscopic geom...
Rapid prototyping techniques (RP) hold great promise for designing 3-dimensional (3-D) regular and o...
A manufacturing process for sheet-based stacked scaffolds (SSCs) based on laser-cutting (LC) was dev...
Most bone tissue engineering research uses porous three-dimensional (3D) scaffolds for cell seeding....
Defects in bone are a constant and serious problem. They occur as a result of high energy trauma, co...
Fused deposition modeling has been used to fabricate three-dimensional (3D) scaffolds for tissue eng...
Interconnected porosity is critical to the design of regenerative scaffolds, as it permits cell migr...
The hypothesis of this study was that the extent of bone regeneration could be enhanced by using sca...