The development of bone permanent implants with a porous structure favoring their integration with the surrounding tissues is emerging as an attractive field of application of additive manufacturing (AM). This article reports on the investigation of the suitability of a hybrid AM technique, that is, computer-aided wet-spinning (CAWS), to fabricate novel poly(methyl meth- acrylate) (PMMA) constructs as porous implant prototypes. The optimization of the processing parameters to fabricate PMMA samples with a predefined internal porous structure and different external shapes is described. The study demonstrates that tailoring post-processing conditions represents a powerful tool to optimize samples macroscopic aspect, micromorphology, and mecha...
Polymethyl methacrylate (PMMA) is regarded as one of the most widely used and prominent biomaterials...
A compaction-agglomeration fabrication tech-nique has been developed to produce poly-methylmethacryl...
This study aims at identifying compositional and architectural (pore size and distribution) paramete...
The development of bone permanent implants with a porous structure favoring their integration with t...
Published Conference ProceedingsAdditive Manufacturing (AM) commonly known as 3D printing has found ...
The file attached to this record is the author's final peer reviewed version. The Publisher's final ...
facial reconstruction and as bone cement and antibiotic-impregnated spacers in orthopaedics. The po...
The focus of this dissertation is on the additive manufacturing (AM) of a porous biodegradable scaff...
Background Reconstruction of large cranial defects after craniectomy can be accomplished by free-han...
Inorganic–organic hybrid biomaterials made with star polymer poly(methyl methacrylate-co-3-(trimetho...
Additive Manufacturing (AM), as the name implies, produces three-dimensional objects by progressivel...
Three-dimensional fibrous scaffolds made of a three-arm star poly(ε-caprolactone) were developed by ...
Polymer microstructural engineering by additive manufacturing (AM) represents a powerful tool to fun...
From MDPI via Jisc Publications RouterHistory: accepted 2021-06-21, pub-electronic 2021-06-25Publica...
The advent of additive manufacturing offered the potential to revolutionize clinical medicine, parti...
Polymethyl methacrylate (PMMA) is regarded as one of the most widely used and prominent biomaterials...
A compaction-agglomeration fabrication tech-nique has been developed to produce poly-methylmethacryl...
This study aims at identifying compositional and architectural (pore size and distribution) paramete...
The development of bone permanent implants with a porous structure favoring their integration with t...
Published Conference ProceedingsAdditive Manufacturing (AM) commonly known as 3D printing has found ...
The file attached to this record is the author's final peer reviewed version. The Publisher's final ...
facial reconstruction and as bone cement and antibiotic-impregnated spacers in orthopaedics. The po...
The focus of this dissertation is on the additive manufacturing (AM) of a porous biodegradable scaff...
Background Reconstruction of large cranial defects after craniectomy can be accomplished by free-han...
Inorganic–organic hybrid biomaterials made with star polymer poly(methyl methacrylate-co-3-(trimetho...
Additive Manufacturing (AM), as the name implies, produces three-dimensional objects by progressivel...
Three-dimensional fibrous scaffolds made of a three-arm star poly(ε-caprolactone) were developed by ...
Polymer microstructural engineering by additive manufacturing (AM) represents a powerful tool to fun...
From MDPI via Jisc Publications RouterHistory: accepted 2021-06-21, pub-electronic 2021-06-25Publica...
The advent of additive manufacturing offered the potential to revolutionize clinical medicine, parti...
Polymethyl methacrylate (PMMA) is regarded as one of the most widely used and prominent biomaterials...
A compaction-agglomeration fabrication tech-nique has been developed to produce poly-methylmethacryl...
This study aims at identifying compositional and architectural (pore size and distribution) paramete...