Iron (Fe) and Fe-based materials have been vigorously explored in orthopedic applications in the past decade mainly owing to their promising mechanical properties including high yield strength, elastic modulus and ductility. Nevertheless, their corrosion products and low corrosion kinetics are the major concerns that need to be improved further despite their appealing mechanical strengths. The current studies on porous Fe-based scaffolds show an improved corrosion rate but the in vitro biocompatibility is still problematic in general. Unlike the Mg implants, the biodegradation and bioabsorption of Fe-based implants are still not well described. This vague issue could implicate the development of Fe-based materials as potential medical impla...
AbstractBiodegradable metals (BMs) are metals and alloys expected to corrode gradually in vivo, with...
Additively manufactured (AM) topologically ordered porous metallic biomaterials with the proper biod...
Successfully designing biodegradable metallic orthopedic implants that support bone remodeling after...
Absorbable metals have been proposed as potential materials for hard tissue scaffolding to offer bot...
Biodegradable metals have been extensively studied due to their potential use as temporary biomedica...
The present work deals with the comparison of the properties of metallic biomaterials in terms of th...
Iron, while attracting less attention than magnesium and zinc, is still one of the best candidates f...
This work investigates the influence of Ag (1 wt%) on the mechanical properties, in vitro and in viv...
The authors evaluated the biodegradability and biocompatibility of an alloy of iron and manganese in...
This thesis refers to Fe-based biodegradable materials and their potencial aplications in medicine, ...
Bone replacement and osteosynthesis require materials which can at least temporarily bear high mecha...
This thesis writes about biodegradable bone implants based on iron. The currently used metal-based i...
Absorbable metals, metals that corrode in physiological environment, constitute a new class of bioma...
This work deals with a current topic, which are biodegradable bone implants. These implants seem to ...
Bioabsorbable materials are fairly new and proper alloys for implantation in the body have not yet b...
AbstractBiodegradable metals (BMs) are metals and alloys expected to corrode gradually in vivo, with...
Additively manufactured (AM) topologically ordered porous metallic biomaterials with the proper biod...
Successfully designing biodegradable metallic orthopedic implants that support bone remodeling after...
Absorbable metals have been proposed as potential materials for hard tissue scaffolding to offer bot...
Biodegradable metals have been extensively studied due to their potential use as temporary biomedica...
The present work deals with the comparison of the properties of metallic biomaterials in terms of th...
Iron, while attracting less attention than magnesium and zinc, is still one of the best candidates f...
This work investigates the influence of Ag (1 wt%) on the mechanical properties, in vitro and in viv...
The authors evaluated the biodegradability and biocompatibility of an alloy of iron and manganese in...
This thesis refers to Fe-based biodegradable materials and their potencial aplications in medicine, ...
Bone replacement and osteosynthesis require materials which can at least temporarily bear high mecha...
This thesis writes about biodegradable bone implants based on iron. The currently used metal-based i...
Absorbable metals, metals that corrode in physiological environment, constitute a new class of bioma...
This work deals with a current topic, which are biodegradable bone implants. These implants seem to ...
Bioabsorbable materials are fairly new and proper alloys for implantation in the body have not yet b...
AbstractBiodegradable metals (BMs) are metals and alloys expected to corrode gradually in vivo, with...
Additively manufactured (AM) topologically ordered porous metallic biomaterials with the proper biod...
Successfully designing biodegradable metallic orthopedic implants that support bone remodeling after...