Titanium and titanium alloys are widely applied in orthopaedics and other medical devices because of their good biocompatibility and mechanical strength. Examples of their applications include internal and external fixations and total joint replacement. However, surfaces of titanium implants often allow the adhesion of bacteria, promote their anchor and eventually lead to biofilm formation. Subsequent results include implant associated infections and osteomyelitis. Effectiveness, durability and cytocompatibility of the implants are the main issues when deciding what implants are suitable for different clinical uses. Failure in providing a long lasting antibacterial property of the implant, insufficiency of targeting a broad spectrum of bact...
Bone ingrowth into and through porous coatings on orthopaedic implants can substantially improve fix...
A major cause of the high risk of infection following implantations is that the biomaterial implante...
The surface design of titanium implants influences not only the local biological reactions but also ...
Orthopedic device-related infections remain a serious challenge to treat. Central to these infection...
The use of biomaterials in orthopaedics for joint replacement, fracture healing and bone regeneratio...
Titanium-based implants are widely used in modern clinical practice; however, complications associat...
Periprosthetic infection is a devastating consequence of implant insertion and can arise from hemato...
Biofilms, especially those formed by Staphylococcus aureus, play a key role in the development of or...
Introduction: An ideal surface for orthopedic implants should improve cellular adhesion and reduce b...
Biofilm-associated infections, particularly those caused by Staphylococcus aureus, are a major cause...
Peri-implant infections from bacterial biofilms on artificial surfaces are a common threat to all me...
Bacterial infection of orthopaedic implants, often caused by Staphylococcus species, may ultimately ...
Titanium implants (Ti) have been widely used in several medical fields. In clinical practice, Ti can...
Prosthetic-associated infections are one of the most challenging postoperative complications for ort...
Bone ingrowth in and through porous coatings on orthopaedic implants can substantially improve their...
Bone ingrowth into and through porous coatings on orthopaedic implants can substantially improve fix...
A major cause of the high risk of infection following implantations is that the biomaterial implante...
The surface design of titanium implants influences not only the local biological reactions but also ...
Orthopedic device-related infections remain a serious challenge to treat. Central to these infection...
The use of biomaterials in orthopaedics for joint replacement, fracture healing and bone regeneratio...
Titanium-based implants are widely used in modern clinical practice; however, complications associat...
Periprosthetic infection is a devastating consequence of implant insertion and can arise from hemato...
Biofilms, especially those formed by Staphylococcus aureus, play a key role in the development of or...
Introduction: An ideal surface for orthopedic implants should improve cellular adhesion and reduce b...
Biofilm-associated infections, particularly those caused by Staphylococcus aureus, are a major cause...
Peri-implant infections from bacterial biofilms on artificial surfaces are a common threat to all me...
Bacterial infection of orthopaedic implants, often caused by Staphylococcus species, may ultimately ...
Titanium implants (Ti) have been widely used in several medical fields. In clinical practice, Ti can...
Prosthetic-associated infections are one of the most challenging postoperative complications for ort...
Bone ingrowth in and through porous coatings on orthopaedic implants can substantially improve their...
Bone ingrowth into and through porous coatings on orthopaedic implants can substantially improve fix...
A major cause of the high risk of infection following implantations is that the biomaterial implante...
The surface design of titanium implants influences not only the local biological reactions but also ...