Highly porous Ti implant materials are being used in order to overcome the stress shielding effect on orthopedic implants. However, the lack of bioactivity on Ti surfaces is still a major concern regarding the osseointegration process. It is known that the rapid recruitment of osteoblasts in bone defects is an essential prerequisite for efficient bone repair. Conventionally, osteoblast recruitment to bone defects and subsequent bone repair has been achieved using growth factors. Thus, in this study highly porous Ti samples were processed by powder metallurgy using space holder technique followed by the bio-functionalization through microarc oxidation using a Ca- and P-rich electrolyte. The biological response in terms of early cell response...
Ti foams are attractive for orthopaedic applications due to reduced Young's modulus and ability of b...
Additive manufacturing has been well established in many sectors, including the medical industry. Fo...
The application of orthopaedic and dental implants has revolutionised th e medical treatment of dege...
Titanium implant failures are mainly related to stress shielding phenomenon and the poor cell intera...
Titanium implant failures are mainly related to stress shielding phenomenon and the poor cell intera...
In this study, highly-interconnected porous titanium implants were produced by powder sintering with...
In this study, highly-interconnected porous titanium implants were produced by powder sintering with...
PING 2019 is organized with the support of funds for specific university research project SVK1-2019-...
Two main problems limit the success of titanium implants: bacterial infection, which restricts their...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
Intervertebral implants should be designed with low load requirements, high friction coefficient and...
Ti foams are attractive for orthopaedic applications due to reduced Young's modulus and ability of b...
Additive manufacturing has been well established in many sectors, including the medical industry. Fo...
The application of orthopaedic and dental implants has revolutionised th e medical treatment of dege...
Titanium implant failures are mainly related to stress shielding phenomenon and the poor cell intera...
Titanium implant failures are mainly related to stress shielding phenomenon and the poor cell intera...
In this study, highly-interconnected porous titanium implants were produced by powder sintering with...
In this study, highly-interconnected porous titanium implants were produced by powder sintering with...
PING 2019 is organized with the support of funds for specific university research project SVK1-2019-...
Two main problems limit the success of titanium implants: bacterial infection, which restricts their...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
Intervertebral implants should be designed with low load requirements, high friction coefficient and...
Ti foams are attractive for orthopaedic applications due to reduced Young's modulus and ability of b...
Additive manufacturing has been well established in many sectors, including the medical industry. Fo...
The application of orthopaedic and dental implants has revolutionised th e medical treatment of dege...