BACKGROUND: High strength porous titanium implants are widely used for the reconstruction of craniofacial defects because of their similar mechanical properties to those of bone. The recent introduction of electron beam melting (EBM) technique allows a direct digitally enabled fabrication of patient specific porous titanium implants, whereas both their in vitro and in vivo biological performance need further investigation. METHODS: In the present study, we fabricated porous Ti6Al4V implants with controlled porous structure by EBM process, analyzed their mechanical properties, and conducted the surface modification with biomimetic approach. The bioactivities of EBM porous titanium in vitro and in vivo were evaluated between implants with and...
The main goal in the treatment of large bone defects is to guarantee a rapid loading of the affected...
Porous Titanium-6Aluminum-4Vanadium scaffolds made by electron beam-based additive manufacturing (AM...
Advanced additive manufacturing techniques such as electron beam melting (EBM), can produce highly p...
High strength porous titanium implants are widely used for the reconstruction of craniofacial defect...
High strength porous titanium implants are widely used for the reconstruction of craniofacial defect...
Titanium-based implants possessing adequately low elasticity modulus and customdesigned structures a...
Human bone is constantly being remodeled, and has the ability to repair itself when damage occurs. H...
EBM (Electron Beam Melting) technology can be used successfully to obtain cellular solids in metalli...
osseointegration of electron beam melted, free-form–fabricated solid and porous titanium alloy: Expe...
Electron Beam Melting (EBM) technology allows the fabrication of free-formed metal scaffolds, thus c...
Three-dimensionally printed porous titanium alloys prepared using the electron beam melting (EBM) te...
Synthetic materials for bone replacement must ensure a sufficient mechanical stability and an adequa...
The main goal in the treatment of large bone defects is to guarantee a rapid loading of the affected...
The main goal in the treatment of large bone defects is to guarantee a rapid loading of the affected...
Abstract Porous Titanium-6Aluminum-4Vanadium scaffolds made by electron beam-based additive manufact...
The main goal in the treatment of large bone defects is to guarantee a rapid loading of the affected...
Porous Titanium-6Aluminum-4Vanadium scaffolds made by electron beam-based additive manufacturing (AM...
Advanced additive manufacturing techniques such as electron beam melting (EBM), can produce highly p...
High strength porous titanium implants are widely used for the reconstruction of craniofacial defect...
High strength porous titanium implants are widely used for the reconstruction of craniofacial defect...
Titanium-based implants possessing adequately low elasticity modulus and customdesigned structures a...
Human bone is constantly being remodeled, and has the ability to repair itself when damage occurs. H...
EBM (Electron Beam Melting) technology can be used successfully to obtain cellular solids in metalli...
osseointegration of electron beam melted, free-form–fabricated solid and porous titanium alloy: Expe...
Electron Beam Melting (EBM) technology allows the fabrication of free-formed metal scaffolds, thus c...
Three-dimensionally printed porous titanium alloys prepared using the electron beam melting (EBM) te...
Synthetic materials for bone replacement must ensure a sufficient mechanical stability and an adequa...
The main goal in the treatment of large bone defects is to guarantee a rapid loading of the affected...
The main goal in the treatment of large bone defects is to guarantee a rapid loading of the affected...
Abstract Porous Titanium-6Aluminum-4Vanadium scaffolds made by electron beam-based additive manufact...
The main goal in the treatment of large bone defects is to guarantee a rapid loading of the affected...
Porous Titanium-6Aluminum-4Vanadium scaffolds made by electron beam-based additive manufacturing (AM...
Advanced additive manufacturing techniques such as electron beam melting (EBM), can produce highly p...