Additive manufacturing represents a powerful tool for the direct fabrication of lightweight and porous structures with tuneable properties. In this study, a fused deposition modelling/3D fibre deposition technique was considered for designing 3D nanocomposite scaffolds with specific architectures and tailored biological, mechanical, and mass transport properties. 3D poly(ε-caprolactone) (PCL)/hydroxyapatite (HA) nanocomposite scaffolds were designed for bone tissue engineering. An optimisation design strategy for the additive manufacturing processes based on extrusion/injection methods was at first extended to the development of the PCL/HA scaffolds. Further insight into the effect of the process parameters on the mechanical properties...
Current clinical strategies to treat large bone size defects, mainly based on autografts, are ineffi...
The design of the bone scaffolds changes and develops with the developing technology and production ...
3D customized scaffolds for craniofacial tissue engineering were designed using advanced strategies ...
Additive manufacturing represents a powerful tool for the direct fabrication of lightweight and poro...
3D Printing and Additive Manufacturing technologies represent powerful tools for the direct fabricat...
AbstractIn the field of reconstructive surgery, a great challenge is represented by bone injuries be...
Additive manufacturing technologies allow for the direct fabrication of 3D scaffolds with improved p...
none12siIn the past few years, researchers have focused on the design and development of three-dimen...
In the current research, an optimization design strategy for additive manufacturing processes based ...
Additive manufacturing (AM) presents the possibility of personalized bone scaffolds with unprecedent...
Scaffold-assisted tissue engineering has emerged as a highly promising strategy for regenerating dam...
Additive manufacturing holds promise for the fabrication of three-dimensional scaffolds with precise...
An Additive Manufacturing technique for the fabrication of three-dimensional polymeric scaffolds, ba...
The ability to control the architecture and strength of a bone tissue engineering scaffold is critic...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI AT REQUEST OF AUTHOR.] Biomaterial tissue scaffolds...
Current clinical strategies to treat large bone size defects, mainly based on autografts, are ineffi...
The design of the bone scaffolds changes and develops with the developing technology and production ...
3D customized scaffolds for craniofacial tissue engineering were designed using advanced strategies ...
Additive manufacturing represents a powerful tool for the direct fabrication of lightweight and poro...
3D Printing and Additive Manufacturing technologies represent powerful tools for the direct fabricat...
AbstractIn the field of reconstructive surgery, a great challenge is represented by bone injuries be...
Additive manufacturing technologies allow for the direct fabrication of 3D scaffolds with improved p...
none12siIn the past few years, researchers have focused on the design and development of three-dimen...
In the current research, an optimization design strategy for additive manufacturing processes based ...
Additive manufacturing (AM) presents the possibility of personalized bone scaffolds with unprecedent...
Scaffold-assisted tissue engineering has emerged as a highly promising strategy for regenerating dam...
Additive manufacturing holds promise for the fabrication of three-dimensional scaffolds with precise...
An Additive Manufacturing technique for the fabrication of three-dimensional polymeric scaffolds, ba...
The ability to control the architecture and strength of a bone tissue engineering scaffold is critic...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI AT REQUEST OF AUTHOR.] Biomaterial tissue scaffolds...
Current clinical strategies to treat large bone size defects, mainly based on autografts, are ineffi...
The design of the bone scaffolds changes and develops with the developing technology and production ...
3D customized scaffolds for craniofacial tissue engineering were designed using advanced strategies ...