Material extrusion additive manufacturing has rapidly grown in use for tissue engineering research since its adoption in the year 2000. It has enabled researchers to produce scaffolds with intricate porous geometries that were not feasible with traditional manufacturing processes. Researchers can control the structural geometry through a wide range of customisable printing parameters and design choices including material, print path, temperature, and many other process parameters. Currently, the impact of these choices is not fully understood. This review focuses on how the position and orientation of extruded filaments, which sometimes referred to as the print path, lay-down pattern, or simply "scaffold design", affect scaffold properties ...
Additive manufacturing in tissue engineering has significantly advanced in acceptance and use to add...
peer reviewedBecause production technologies for the fabrication of scaffolds for tissue engineering...
In this study, current 3 dimensional printing technologies have been critically reviewed and most su...
Material extrusion additive manufacturing has rapidly grown in use for tissue engineering research s...
Three-dimensional (3D) printing has demonstrated its great potential in producing functional scaffol...
AbstractThe success of tissue engineering is strongly dependent on the ability to produce biomimetic...
Additive manufacturing technologies allow for the direct fabrication of 3D scaffolds with improved p...
ABSTRACTA growing number of three-dimensional (3D)-printing processes have been applied to tissue en...
Various fabrication methods including traditional chemical engineering methods and advanced Additive...
Melt extrusion of thermoplastic materials is an important technique for fabricating tissue engineeri...
Tissue engineering is a field that allows us to look into the future for regenerative medicine. It m...
FCT through IDMEC under LAETA, project UIDB/50022/2020; CeFEMA contract UID/CTM/04540/2019 ; Strateg...
Additive manufacturing (AM) presents the possibility of personalized bone scaffolds with unprecedent...
With the recent improvements in three dimensional (3D) printing technologies, the potential for tiss...
Tissue engineering, whose aim is to repair or replace damaged tissues by combining the principle of ...
Additive manufacturing in tissue engineering has significantly advanced in acceptance and use to add...
peer reviewedBecause production technologies for the fabrication of scaffolds for tissue engineering...
In this study, current 3 dimensional printing technologies have been critically reviewed and most su...
Material extrusion additive manufacturing has rapidly grown in use for tissue engineering research s...
Three-dimensional (3D) printing has demonstrated its great potential in producing functional scaffol...
AbstractThe success of tissue engineering is strongly dependent on the ability to produce biomimetic...
Additive manufacturing technologies allow for the direct fabrication of 3D scaffolds with improved p...
ABSTRACTA growing number of three-dimensional (3D)-printing processes have been applied to tissue en...
Various fabrication methods including traditional chemical engineering methods and advanced Additive...
Melt extrusion of thermoplastic materials is an important technique for fabricating tissue engineeri...
Tissue engineering is a field that allows us to look into the future for regenerative medicine. It m...
FCT through IDMEC under LAETA, project UIDB/50022/2020; CeFEMA contract UID/CTM/04540/2019 ; Strateg...
Additive manufacturing (AM) presents the possibility of personalized bone scaffolds with unprecedent...
With the recent improvements in three dimensional (3D) printing technologies, the potential for tiss...
Tissue engineering, whose aim is to repair or replace damaged tissues by combining the principle of ...
Additive manufacturing in tissue engineering has significantly advanced in acceptance and use to add...
peer reviewedBecause production technologies for the fabrication of scaffolds for tissue engineering...
In this study, current 3 dimensional printing technologies have been critically reviewed and most su...