3D printing is a promising method for the fabrication of scaffolds in the field of bone tissue engineering. To date, the mechanical strength of 3D printed ceramic scaffolds is not sufficient for a variety of applications in the reconstructive surgery. Mechanical strength is directly in relation with the porosity of the 3D printed scaffolds. The porosity is directly influenced by particle size and particle-size distribution of the raw material. To investigate this impact, a hydroxyapatite granule blend with a wide particle size distribution was fractioned by sieving. The specific fractions and bimodal mixtures of the sieved granule blend were used to 3D print specimens. It has been shown that an optimized arrangement of fractions with large ...
Recent advancements in computational design and additive manufacturing have enabled the fabrication ...
The design of the bone scaffolds changes and develops with the developing technology and production ...
Item does not contain fulltextHydroxyapatite (HAP) and tricalcium phosphate (TCP) are two very commo...
3D printing is a promising method for the fabrication of scaffolds in the field of bone tissue engin...
In this study presents materials and design optimization of clinically approved hydroxyapatite (HA) ...
Porous materials are currently subject to the great interest of tissue engineering. They provide uni...
Abstract Additive manufacturing methods such as three-dimensional printing (3DP) show a great potent...
AbstractAdditive manufacturing methods such as three-dimensional printing (3DP) show a great potenti...
Polylactic acid scaffolds produced by 3D printing is a promising strategy for bone tissue engineerin...
A systematic characterisation of bone tissue scaffolds fabricated via 3D printing from hydroxyapatit...
For the fabrication of patient individual bone replacement scaffolds using rapid prototyping (RP) te...
Additive Manufacturing (AM) technologies had widely used in most of the application such as aeronaut...
Powder-based inkjet 3D printing method is one of the most attractive solid free form techniques. It ...
For the fabrication of patient individual bone replacement scaffolds using rapid prototyping (RP) te...
Hydroxyapatite is one of the materials of choice for tissue engineering bone scaffolds manufacturing...
Recent advancements in computational design and additive manufacturing have enabled the fabrication ...
The design of the bone scaffolds changes and develops with the developing technology and production ...
Item does not contain fulltextHydroxyapatite (HAP) and tricalcium phosphate (TCP) are two very commo...
3D printing is a promising method for the fabrication of scaffolds in the field of bone tissue engin...
In this study presents materials and design optimization of clinically approved hydroxyapatite (HA) ...
Porous materials are currently subject to the great interest of tissue engineering. They provide uni...
Abstract Additive manufacturing methods such as three-dimensional printing (3DP) show a great potent...
AbstractAdditive manufacturing methods such as three-dimensional printing (3DP) show a great potenti...
Polylactic acid scaffolds produced by 3D printing is a promising strategy for bone tissue engineerin...
A systematic characterisation of bone tissue scaffolds fabricated via 3D printing from hydroxyapatit...
For the fabrication of patient individual bone replacement scaffolds using rapid prototyping (RP) te...
Additive Manufacturing (AM) technologies had widely used in most of the application such as aeronaut...
Powder-based inkjet 3D printing method is one of the most attractive solid free form techniques. It ...
For the fabrication of patient individual bone replacement scaffolds using rapid prototyping (RP) te...
Hydroxyapatite is one of the materials of choice for tissue engineering bone scaffolds manufacturing...
Recent advancements in computational design and additive manufacturing have enabled the fabrication ...
The design of the bone scaffolds changes and develops with the developing technology and production ...
Item does not contain fulltextHydroxyapatite (HAP) and tricalcium phosphate (TCP) are two very commo...