Titanium and its alloys are widely used in surgical implants due to their appropriate properties like corrosion resistance, biocompatibility, and load bearing. Unfortunately when metals are used for orthopedic and dental implants there is the possibility of loosening over a long period of time. Surface modification is a good way to counter this problem. A thin tantalum oxide layer obtained by layer-by-layer (LBL) sol-gel deposition on top of a titanium surface is expected to improve biocorrosion resistance in the body fluid, biocompatibility, and radio-opacity. This elaboration step is followed by a modification of the tantalum oxide surface with an organodiphosphonic acid self-assembled monolayer, capable of chemically binding to the oxide...
Tantalum and its alloys have been investigated as the next generation of orthopedic implant material...
Titanium and its alloys or tantalum (Ta) are materials used in orthopaedic and dental implants due t...
Surface modification of metallic implants is a promising strategy to improve tissue tolerance, osseo...
Most of the actual orthopaedic devices, widely made of titanium and its alloys, present different we...
[[abstract]]Our aim in this study was to enhance the corrosion resistance and biocompatibility of Ti...
Metallic implants are widely used these days but need seriously improvement to show longer life and ...
In order to reduce the loosening of dental implants, surface modification with hydroxyapatite (HA) c...
Tantalum (Ta) is increasingly being used in orthopaedic applications owing to its superior non-toxic...
Titanium alloys are used extensively in orthopaedic implants because of their high strength to weigh...
With the growing demands for bone implant therapy, titanium (Ti) and its alloys are considered as ap...
Carbon nanotubes used as fillers in composite materials are more and more appreciated for the outsta...
Ti alloy (Ti-6Al-4V) is a one of the biomaterials that is extensively used in the human body as impl...
Titanium is a commonly used biomaterial for dental and orthopaedic applications. To increase its abi...
Titanium and its alloys are the most widespread materials employed in orthopaedic and dental surgery...
In order to improve the osseointegration of endosseous implants made from titanium, the structure an...
Tantalum and its alloys have been investigated as the next generation of orthopedic implant material...
Titanium and its alloys or tantalum (Ta) are materials used in orthopaedic and dental implants due t...
Surface modification of metallic implants is a promising strategy to improve tissue tolerance, osseo...
Most of the actual orthopaedic devices, widely made of titanium and its alloys, present different we...
[[abstract]]Our aim in this study was to enhance the corrosion resistance and biocompatibility of Ti...
Metallic implants are widely used these days but need seriously improvement to show longer life and ...
In order to reduce the loosening of dental implants, surface modification with hydroxyapatite (HA) c...
Tantalum (Ta) is increasingly being used in orthopaedic applications owing to its superior non-toxic...
Titanium alloys are used extensively in orthopaedic implants because of their high strength to weigh...
With the growing demands for bone implant therapy, titanium (Ti) and its alloys are considered as ap...
Carbon nanotubes used as fillers in composite materials are more and more appreciated for the outsta...
Ti alloy (Ti-6Al-4V) is a one of the biomaterials that is extensively used in the human body as impl...
Titanium is a commonly used biomaterial for dental and orthopaedic applications. To increase its abi...
Titanium and its alloys are the most widespread materials employed in orthopaedic and dental surgery...
In order to improve the osseointegration of endosseous implants made from titanium, the structure an...
Tantalum and its alloys have been investigated as the next generation of orthopedic implant material...
Titanium and its alloys or tantalum (Ta) are materials used in orthopaedic and dental implants due t...
Surface modification of metallic implants is a promising strategy to improve tissue tolerance, osseo...