Cardiovascular stents are biomedical devices, which restore normal blood flow in the case of coronary artery obstructions. Biodegradable metals provide the possibility of a less-invasive treatment, where the stent is dissolved in body fluids after remodelling of the artery. Compared to Mg-and Fe-alloys, Zn and its alloys provide optimal corrosion rates as a more recent option. New Zn-alloys are under development and often need to be tested for corrosion and biological properties. However, Zn and its alloys still require further investigation in terms of the production routes involved for stent manufacturing. Especially at a prototyping stage, the extrusion of thin biodegradable tubes is an expensive and difficult process. This work investig...
Amongst other cardiovascular stent materials such as stainless steel, titanium, Ni-Ti shape memory ...
Zn based metals have exhibited promising applications for biodegradable implants. Only a handful of ...
The search for biodegradable metals with mechanical properties equal or higher to those of currently...
Cardiovascular stents are biomedical devices, which restore normal blood flow in the case of coronar...
The search for a degradable metal simultaneously showing mechanical properties equal or higher to th...
Bioabsorbable metal stents are being developed to mitigate the long-term side effects associated wit...
The use of magnesium-alloy stents shows promise as a less intrusive solution for the treatment of ca...
For biomedical devices, cardiovascular stents in particular, the employed material plays a crucial r...
The objective of this article is to present materials and technology for the manufacture of vascular...
Metallic Zn alloys have recently gained interest as potential candidates for developing platforms of...
Amongst other cardiovascular stent materials such as stainless steel, titanium, Ni-Ti shape memory ...
Zn based metals have exhibited promising applications for biodegradable implants. Only a handful of ...
The search for biodegradable metals with mechanical properties equal or higher to those of currently...
Cardiovascular stents are biomedical devices, which restore normal blood flow in the case of coronar...
The search for a degradable metal simultaneously showing mechanical properties equal or higher to th...
Bioabsorbable metal stents are being developed to mitigate the long-term side effects associated wit...
The use of magnesium-alloy stents shows promise as a less intrusive solution for the treatment of ca...
For biomedical devices, cardiovascular stents in particular, the employed material plays a crucial r...
The objective of this article is to present materials and technology for the manufacture of vascular...
Metallic Zn alloys have recently gained interest as potential candidates for developing platforms of...
Amongst other cardiovascular stent materials such as stainless steel, titanium, Ni-Ti shape memory ...
Zn based metals have exhibited promising applications for biodegradable implants. Only a handful of ...
The search for biodegradable metals with mechanical properties equal or higher to those of currently...