Additive manufacturing allows for the production of porous metallic implants for use in orthopaedics, providing excellent mechanical stability and osseointegration. However, the increased surface area of such porous implants also renders them susceptible to bacterial colonization. In this work, two trabecular porous Ti6Al4V alloys produced by electron beam melting were investigated for their osteocompatibility and antimicrobial effects, comparing samples with a silver-coated surface to uncoated samples. Dense grit-blasted Ti samples were used for comparison. The porous samples had pore sizes of 500-600 mu m and 5 to 10 mu m surface roughness, the silver-coated samples contained 7 at.% Ag, resulting in a cumulative Ag release of 3.5 ppm up t...
Joint replacement surgery is associated with significant morbidity and mortality following infection...
Bone ingrowth in and through porous coatings on orthopaedic implants can substantially improve their...
High strength porous titanium implants are widely used for the reconstruction of craniofacial defect...
Additive manufacturing allows for the production of porous metallic implants for use in orthopaedics...
The two major problems of titanium alloy surface of bone/dental implants were the lack of native tis...
In prosthetic joint surgery, Ag coating of implant areas in direct contact with bone has been met wi...
Owing to their mechanical properties and bioinertness titanium alloys remain the preferred load-bear...
Introduction: An ideal surface for orthopedic implants should improve cellular adhesion and reduce b...
Implant-associated infections are highly challenging to treat, particularly with the emergence of mu...
The restoration of large bone defects caused by trauma, tumor resection, or infection is a major cli...
The holy grail of orthopedic implant design is to ward off both aseptic and septic loosening for lon...
Implant-associated infections (IAI) are often recurrent, expensive to treat, and associated with hig...
Joint replacement surgery is associated with significant morbidity and mortality following infection...
Additive manufacturing (AM) is gaining increasing interest for realization of customized porous tita...
BACKGROUND: High strength porous titanium implants are widely used for the reconstruction of craniof...
Joint replacement surgery is associated with significant morbidity and mortality following infection...
Bone ingrowth in and through porous coatings on orthopaedic implants can substantially improve their...
High strength porous titanium implants are widely used for the reconstruction of craniofacial defect...
Additive manufacturing allows for the production of porous metallic implants for use in orthopaedics...
The two major problems of titanium alloy surface of bone/dental implants were the lack of native tis...
In prosthetic joint surgery, Ag coating of implant areas in direct contact with bone has been met wi...
Owing to their mechanical properties and bioinertness titanium alloys remain the preferred load-bear...
Introduction: An ideal surface for orthopedic implants should improve cellular adhesion and reduce b...
Implant-associated infections are highly challenging to treat, particularly with the emergence of mu...
The restoration of large bone defects caused by trauma, tumor resection, or infection is a major cli...
The holy grail of orthopedic implant design is to ward off both aseptic and septic loosening for lon...
Implant-associated infections (IAI) are often recurrent, expensive to treat, and associated with hig...
Joint replacement surgery is associated with significant morbidity and mortality following infection...
Additive manufacturing (AM) is gaining increasing interest for realization of customized porous tita...
BACKGROUND: High strength porous titanium implants are widely used for the reconstruction of craniof...
Joint replacement surgery is associated with significant morbidity and mortality following infection...
Bone ingrowth in and through porous coatings on orthopaedic implants can substantially improve their...
High strength porous titanium implants are widely used for the reconstruction of craniofacial defect...