Twinning-induced plasticity (TWIP) Fe-Mn-C steels are biodegradable metals with far superior mechanical properties to any biodegradable metal, including Mg alloys, used in commercially available devices. For this reason, the use of Fe-Mn-C alloys to produce thinner and thinner implants can be exploited for overcoming the device size limitations that biodegradable stents still present. However, Fe-Mn steels are known to form a phosphate layer on their surface over long implantation times in animals, preventing device degradation in the required timeframe. The introduction of second phases in such alloys to promote galvanic coupling showed a short-Term promise, and particularly the use of Ag looked especially effective. Nonetheless, the evolu...
INTRODUCTION: Some orthopaedics metallic implants require removal after healing so as to avoid stres...
INTRODUCTION: Some orthopaedics metallic implants require removal after healing so as to avoid stres...
The application of biodegradable materials to stent design has the potential to transform coronary a...
Twinning-induced plasticity (TWIP) Fe-Mn-C steels are biodegradable metals with far superior mechani...
While Fe-based alloys have already been reported to possess all mechanical properties required for v...
While Fe-based alloys have already been reported to possess all mechanical properties required for v...
A current challenge concerns developing new bioresorbable stents that combine optimal mechanical pro...
Twinning-induced plasticity (TWIP) steels are considered excellent materials for manufacturing produ...
Fe-based alloys are of increasing interest for the use as bioresorbable materials. Their mechanical ...
Cardiovascular diseases, such as blood vessels obstructions are common. They are the main cause of d...
Cardiovascular diseases such as arteriosclerosis are widespread nowadays. Implanting a stent in the ...
Pure iron was determined to be a valid candidate material for biodegradable metallic stents in recen...
INTRODUCTION: Some orthopaedics metallic implants require removal after healing so as to avoid stres...
INTRODUCTION: Some orthopaedics metallic implants require removal after healing so as to avoid stres...
The application of biodegradable materials to stent design has the potential to transform coronary a...
Twinning-induced plasticity (TWIP) Fe-Mn-C steels are biodegradable metals with far superior mechani...
While Fe-based alloys have already been reported to possess all mechanical properties required for v...
While Fe-based alloys have already been reported to possess all mechanical properties required for v...
A current challenge concerns developing new bioresorbable stents that combine optimal mechanical pro...
Twinning-induced plasticity (TWIP) steels are considered excellent materials for manufacturing produ...
Fe-based alloys are of increasing interest for the use as bioresorbable materials. Their mechanical ...
Cardiovascular diseases, such as blood vessels obstructions are common. They are the main cause of d...
Cardiovascular diseases such as arteriosclerosis are widespread nowadays. Implanting a stent in the ...
Pure iron was determined to be a valid candidate material for biodegradable metallic stents in recen...
INTRODUCTION: Some orthopaedics metallic implants require removal after healing so as to avoid stres...
INTRODUCTION: Some orthopaedics metallic implants require removal after healing so as to avoid stres...
The application of biodegradable materials to stent design has the potential to transform coronary a...