Magnesium is a type of reactive metal, and is susceptible to galvanic corrosion. In the present study, the impact of coexistence of Ti on the corrosion behavior of high purity Mg (HP Mg) was investigated both in vitro and in vivo. Increased corrosion rate of HP Mg was demonstrated when Mg and Ti discs were not in contact. The in vivo experiments further confirmed accelerating corrosion of HP Mg screws when they were co-implanted with Ti screws into Sprague-Dawley rats' femur, spacing 5 and 10 mm. Micro CT scan and 3D reconstruction revealed severe corrosion morphology of HP Mg screws. The calculated volume loss was much higher for the HP Mg screw co-implanted with Ti screw as compared to that co-implanted with another Mg screw. Consequ...
Background. Pure magnesium and its alloys are promising biodegradable biomaterials for cardiovascula...
Magnesium (Mg) was originally developed as a degradable metallic biomaterial for orthopaedic applica...
It is well-known that processing by severe plastic deformation using high-pressure torsion (HPT) pro...
Magnesium alloys are presently under investigation as promising biodegradable implant materials with...
Magnesium alloys are presently under investigation as promising biodegradable implant materials with...
Corrosion was studied in vitro in Nor's solution (CO2 - bicarbonate buffered Hank's solution) at 37 ...
Magnesium (Mg) and its alloys were initially investigated as resorbable orthopaedic biomaterials mor...
High-purity magnesium (HP Mg) takes advantage in no alloying toxic elements and slower degradation r...
Magnesium alloys have been proposed as prospective degradable implant materials. To elucidate the co...
In magnesium alloys, the components used modify the alloy properties. For magnesium implants in cont...
The development of resorbable osteofixation materials that degrade upon substitution by regenerated ...
In this article, we are presenting some findings of magnesium corrosion in an _in vivo_ model. While...
Many publications are available on the physiological and pseudophysiological corrosion of magnesium ...
The future of biomaterial design will rely on temporary implant materials that degrade while tissues...
The future of biomaterial design will rely on temporary implant materials that degrade while tissues...
Background. Pure magnesium and its alloys are promising biodegradable biomaterials for cardiovascula...
Magnesium (Mg) was originally developed as a degradable metallic biomaterial for orthopaedic applica...
It is well-known that processing by severe plastic deformation using high-pressure torsion (HPT) pro...
Magnesium alloys are presently under investigation as promising biodegradable implant materials with...
Magnesium alloys are presently under investigation as promising biodegradable implant materials with...
Corrosion was studied in vitro in Nor's solution (CO2 - bicarbonate buffered Hank's solution) at 37 ...
Magnesium (Mg) and its alloys were initially investigated as resorbable orthopaedic biomaterials mor...
High-purity magnesium (HP Mg) takes advantage in no alloying toxic elements and slower degradation r...
Magnesium alloys have been proposed as prospective degradable implant materials. To elucidate the co...
In magnesium alloys, the components used modify the alloy properties. For magnesium implants in cont...
The development of resorbable osteofixation materials that degrade upon substitution by regenerated ...
In this article, we are presenting some findings of magnesium corrosion in an _in vivo_ model. While...
Many publications are available on the physiological and pseudophysiological corrosion of magnesium ...
The future of biomaterial design will rely on temporary implant materials that degrade while tissues...
The future of biomaterial design will rely on temporary implant materials that degrade while tissues...
Background. Pure magnesium and its alloys are promising biodegradable biomaterials for cardiovascula...
Magnesium (Mg) was originally developed as a degradable metallic biomaterial for orthopaedic applica...
It is well-known that processing by severe plastic deformation using high-pressure torsion (HPT) pro...