Porosity plays a key role on the osteogenic performance of bone scaffolds. Direct Ink Writing (DIW) allows the design of customized synthetic bone grafts with patient-specific architecture and controlled macroporosity. Being an extrusion-based technique, the scaffolds obtained are formed by arrays of cylindrical filaments, and therefore have convex surfaces. This may represent a serious limitation, as the role of surface curvature and more specifically the stimulating role of concave surfaces in osteoinduction and bone growth has been recently highlighted. Hence the need to design strategies that allow the introduction of concave pores in DIW scaffolds. In the current study, we propose to add gelatin microspheres as a sacrificial material i...
Bone cell response to 3D bioinspired scaffolds was tested on osteoblast culture supernatants and by ...
In this study, we describe the additive manufacturing of porous three-dimensionally (3D) printed cer...
This paper presents a proof-of-concept study on the biocolonization of 3D-printed hydroxyapatite sca...
Low temperature self-setting ceramic inks have been scarcely investigated for solid freeform fabrica...
In recent times, tremendous progress has been evidenced by the advancements in various methods of ge...
In recent times, tremendous progress has been evidenced by the advancements in various methods of ge...
The use of porous three-dimensional (3D) composite scaffolds has attracted great attention in bone t...
Additive manufacturing holds promise for the fabrication of three-dimensional scaffolds with precise...
Direct ink writing (DIW) techniques open up new possibilities for the fabrication of patient-specifi...
The crisis of organ donors is an urgent call to develop fully functional substitutes in a short time...
The crisis of organ donors is an urgent call to develop fully functional substitutes in a short time...
Orthopedic and craniofacial surgical procedures require the reconstruction of bone defects caused by...
The design of the bone scaffolds changes and develops with the developing technology and production ...
The crisis of organ donors is an urgent call to develop fully functional substitutes in a short time...
Bone cell response to 3D bioinspired scaffolds was tested on osteoblast culture supernatants and by ...
Bone cell response to 3D bioinspired scaffolds was tested on osteoblast culture supernatants and by ...
In this study, we describe the additive manufacturing of porous three-dimensionally (3D) printed cer...
This paper presents a proof-of-concept study on the biocolonization of 3D-printed hydroxyapatite sca...
Low temperature self-setting ceramic inks have been scarcely investigated for solid freeform fabrica...
In recent times, tremendous progress has been evidenced by the advancements in various methods of ge...
In recent times, tremendous progress has been evidenced by the advancements in various methods of ge...
The use of porous three-dimensional (3D) composite scaffolds has attracted great attention in bone t...
Additive manufacturing holds promise for the fabrication of three-dimensional scaffolds with precise...
Direct ink writing (DIW) techniques open up new possibilities for the fabrication of patient-specifi...
The crisis of organ donors is an urgent call to develop fully functional substitutes in a short time...
The crisis of organ donors is an urgent call to develop fully functional substitutes in a short time...
Orthopedic and craniofacial surgical procedures require the reconstruction of bone defects caused by...
The design of the bone scaffolds changes and develops with the developing technology and production ...
The crisis of organ donors is an urgent call to develop fully functional substitutes in a short time...
Bone cell response to 3D bioinspired scaffolds was tested on osteoblast culture supernatants and by ...
Bone cell response to 3D bioinspired scaffolds was tested on osteoblast culture supernatants and by ...
In this study, we describe the additive manufacturing of porous three-dimensionally (3D) printed cer...
This paper presents a proof-of-concept study on the biocolonization of 3D-printed hydroxyapatite sca...