International audienceNowadays, new engineering developments that combine computational methods and additive manufacturing are able to overcome the current limitations of conventional ceramic manufacturing methods. In this context, a robust bioceramic manufacturing process based on the impregnation of three-dimensional (3D) printed wax molds was developed. The innovative and creative potential of this process is based on the ability to impregnate homogeneously a complex structural design in a reproducible way. We investigated on the optimization of hydroxyapatite slurry based on its preparation parameters. Scaffolds were successfully produced with a wide range of slurry formulations. The results indicate that the bioceramics quality is prim...
In this study, we describe the additive manufacturing of porous three-dimensionally (3D) printed cer...
This study demonstrates the usefulness of the lithography-based ceramic 3-dimensional printing techn...
In current research a new method for manufacturing of porous hydroxyapatite ceramics using highly vi...
International audienceNowadays, new engineering developments that combine computational methods and ...
International audienceCurrent architectural and production limitations prevent the manufacturing sta...
3D printing is changing the whole manufacturing concept of components and products. The freedom of d...
The present study proposes a characterization approach for the extrusion process of hydroxyapatite (...
The diploma thesis is related to the preparation of hydroxyapatite complex structures by additive ma...
Bioceramic scaffolds with fully controlled macroporosity are highly desired materials for bone subst...
Due to increasing average age of population around the world, there are more patients who need surge...
In this study presents materials and design optimization of clinically approved hydroxyapatite (HA) ...
International audienceThis study aims to investigate the feasibility of generating three-dimensional...
Unlike traditional stochastic scaffold fabrication techniques, additive manufacturing (AM) can be us...
AbstractThe fundamentally different features of Rapid prototyping (RP) from that of conventional sin...
In recent years, innovative methods have been developed for the repair and regeneration of damaged a...
In this study, we describe the additive manufacturing of porous three-dimensionally (3D) printed cer...
This study demonstrates the usefulness of the lithography-based ceramic 3-dimensional printing techn...
In current research a new method for manufacturing of porous hydroxyapatite ceramics using highly vi...
International audienceNowadays, new engineering developments that combine computational methods and ...
International audienceCurrent architectural and production limitations prevent the manufacturing sta...
3D printing is changing the whole manufacturing concept of components and products. The freedom of d...
The present study proposes a characterization approach for the extrusion process of hydroxyapatite (...
The diploma thesis is related to the preparation of hydroxyapatite complex structures by additive ma...
Bioceramic scaffolds with fully controlled macroporosity are highly desired materials for bone subst...
Due to increasing average age of population around the world, there are more patients who need surge...
In this study presents materials and design optimization of clinically approved hydroxyapatite (HA) ...
International audienceThis study aims to investigate the feasibility of generating three-dimensional...
Unlike traditional stochastic scaffold fabrication techniques, additive manufacturing (AM) can be us...
AbstractThe fundamentally different features of Rapid prototyping (RP) from that of conventional sin...
In recent years, innovative methods have been developed for the repair and regeneration of damaged a...
In this study, we describe the additive manufacturing of porous three-dimensionally (3D) printed cer...
This study demonstrates the usefulness of the lithography-based ceramic 3-dimensional printing techn...
In current research a new method for manufacturing of porous hydroxyapatite ceramics using highly vi...