Magnesium alloys are increasingly researched as temporary biodegradable metal implants in bone applications due to their mechanical properties which are more similar to bone than conventional implant metals and the fact that Magnesium occurs naturally within the body. However, the degradation processes in vivo and in particular the interaction of the bone with the degrading material need to be further investigated. In this study we are presenting the first quantitative comparison of the bone ultrastructure formed at the interface of biodegradable Mg-5Gd and Mg-10Gd implants and titanium and PEEK implants after 4, 8 and 12 weeks healing time using two-dimensional small angle X-ray scattering and X-ray diffraction. Differences in mineralizati...
Permanent implants made of titanium or its alloys are the gold standard in many orthopedic and traum...
Biodegradable magnesium-alloys are promising implants in orthopedic and cranio-facial surgery to for...
The development of resorbable osteofixation materials that degrade upon substitution by regenerated ...
Magnesium alloys are increasingly researched as temporary biodegradable metal implants in bone appli...
Biodegradable magnesium (Mg) alloys can revolutionize osteosynthesis, because they have mechanical p...
The utilization of biodegradable magnesium (Mg)-based implants for restoration of bone function foll...
Biodegradable implants are taking an increasingly important role in the area of orthopedic implants ...
Magnesium(Mg)-alloys are promising candidates as temporary implants for orthopedic and cranio-facial...
Nowadays there is a need for new generation of biodegradable implants, which should be able to stimu...
Extensive research is being conducted on magnesium (Mg) alloys for bone implant manufacturing, due t...
This study investigated the distribution of the elemental constituents of Mg-based implants at vario...
Magnesium (Mg) alloys, a novel class of degradable, metallic biomaterials, have attracted growing in...
Biodegradable alloys and especially magnesium-based alloys are considered by many researchers as mat...
Permanent implants made of titanium or its alloys are the gold standard in many orthopedic and traum...
Biodegradable magnesium-alloys are promising implants in orthopedic and cranio-facial surgery to for...
The development of resorbable osteofixation materials that degrade upon substitution by regenerated ...
Magnesium alloys are increasingly researched as temporary biodegradable metal implants in bone appli...
Biodegradable magnesium (Mg) alloys can revolutionize osteosynthesis, because they have mechanical p...
The utilization of biodegradable magnesium (Mg)-based implants for restoration of bone function foll...
Biodegradable implants are taking an increasingly important role in the area of orthopedic implants ...
Magnesium(Mg)-alloys are promising candidates as temporary implants for orthopedic and cranio-facial...
Nowadays there is a need for new generation of biodegradable implants, which should be able to stimu...
Extensive research is being conducted on magnesium (Mg) alloys for bone implant manufacturing, due t...
This study investigated the distribution of the elemental constituents of Mg-based implants at vario...
Magnesium (Mg) alloys, a novel class of degradable, metallic biomaterials, have attracted growing in...
Biodegradable alloys and especially magnesium-based alloys are considered by many researchers as mat...
Permanent implants made of titanium or its alloys are the gold standard in many orthopedic and traum...
Biodegradable magnesium-alloys are promising implants in orthopedic and cranio-facial surgery to for...
The development of resorbable osteofixation materials that degrade upon substitution by regenerated ...