While Fe-based alloys have already been reported to possess all mechanical properties required for vascular stenting, their relatively low degradation rate in vivo still constitutes their main bottleneck. The inflammatory reaction generated by a stent is inversely proportional to its mass. Therefore, the tendency in stenting is to lower the section so to reduce the inflammatory reaction. Twinning-induced plasticity steels (TWIP) possess excellent mechanical properties for envisaging the next generation of thinner degradable cardiovascular stents. To accelerate the degradation, the addition of noble elements was proposed, aimed at promoting corrosion by galvanic coupling. In this context, silver was reported to generally increase the degrada...
Despite a considerable clinical and investigative emphasis on the problem of in-stent restenosis (IS...
The application of biodegradable materials to stent design has the potential to transform coronary a...
Magnesium alloys have gained great attention as biodegradable materials for stent applications. Card...
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...
Twinning-induced plasticity (TWIP) steels are considered excellent materials for manufacturing produ...
Twinning-induced plasticity (TWIP) Fe-Mn-C steels are biodegradable metals with far superior mechani...
A current challenge concerns developing new bioresorbable stents that combine optimal mechanical pro...
Nowadays, coronary permanent stents are used to open clogged artery. However, after 6 to 12 months t...
Cardiovascular diseases, such as blood vessels obstructions are common. They are the main cause of d...
Despite a considerable clinical and investigative emphasis on the problem of in-stent restenosis (IS...
The application of biodegradable materials to stent design has the potential to transform coronary a...
Magnesium alloys have gained great attention as biodegradable materials for stent applications. Card...
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...
Twinning-induced plasticity (TWIP) steels are considered excellent materials for manufacturing produ...
Twinning-induced plasticity (TWIP) Fe-Mn-C steels are biodegradable metals with far superior mechani...
A current challenge concerns developing new bioresorbable stents that combine optimal mechanical pro...
Nowadays, coronary permanent stents are used to open clogged artery. However, after 6 to 12 months t...
Cardiovascular diseases, such as blood vessels obstructions are common. They are the main cause of d...
Despite a considerable clinical and investigative emphasis on the problem of in-stent restenosis (IS...
The application of biodegradable materials to stent design has the potential to transform coronary a...
Magnesium alloys have gained great attention as biodegradable materials for stent applications. Card...