Magnesium and its alloys are an emerging class of resorbable materials for orthopedic and cardiovascular applications. The typical strategy underlying the development of these materials involves the control of material processing routes and the addition of alloying elements. Crystallographic texture is known to control bulk mechanical as well as surface properties. However, its role in determining the properties of magnesium for implant materials has not been well studied. In this work, an extruded rod of pure magnesium was cut in multiple directions to generate samples with different textures. It was found that texture significantly affected the strength and ductility of magnesium. Corrosion rates in Hank's solution decreased with the incr...
In recent years, Magnesium (Mg) and its alloys as bioresorbable metals have attracted increasing att...
Magnesium and its alloys have gained significant popularity due to their light weight and their pote...
Magnesium (Mg) and its alloys were initially investigated as resorbable orthopaedic biomaterials mor...
The application of biodegradable magnesium-based materials in the biomedical field is highly restric...
Magnesium (Mg) and its alloys provide numerous unique benefits as potential resorptive biomaterials ...
The combination of high strength, light weight, and natural biodegradability renders magnesium (Mg) ...
Medical implants are devices that are often placed inside the human body to provide support to organ...
Abstract: The use of magnesium and its alloys as biode-gradable metallic implant materials requires ...
The biggest challenge with magnesium alloy biodegradable implants is the rapid corrosion at the earl...
Background. Pure magnesium and its alloys are promising biodegradable biomaterials for cardiovascula...
The potential of Magnesium (Mg)-based temporary biodegradable metallic implants relies most heavily ...
Recent biomedical engineering development has made temporary implants not only possible but a certai...
Being biocompatible and biodegradable, magnesium alloys are considered as the new generation biomedi...
Background Magnesium alloys are of particular interest in medical science since they provide compat...
High-purity magnesium (Mg) is a promising biodegradable metal for oral and maxillofacial implants. A...
In recent years, Magnesium (Mg) and its alloys as bioresorbable metals have attracted increasing att...
Magnesium and its alloys have gained significant popularity due to their light weight and their pote...
Magnesium (Mg) and its alloys were initially investigated as resorbable orthopaedic biomaterials mor...
The application of biodegradable magnesium-based materials in the biomedical field is highly restric...
Magnesium (Mg) and its alloys provide numerous unique benefits as potential resorptive biomaterials ...
The combination of high strength, light weight, and natural biodegradability renders magnesium (Mg) ...
Medical implants are devices that are often placed inside the human body to provide support to organ...
Abstract: The use of magnesium and its alloys as biode-gradable metallic implant materials requires ...
The biggest challenge with magnesium alloy biodegradable implants is the rapid corrosion at the earl...
Background. Pure magnesium and its alloys are promising biodegradable biomaterials for cardiovascula...
The potential of Magnesium (Mg)-based temporary biodegradable metallic implants relies most heavily ...
Recent biomedical engineering development has made temporary implants not only possible but a certai...
Being biocompatible and biodegradable, magnesium alloys are considered as the new generation biomedi...
Background Magnesium alloys are of particular interest in medical science since they provide compat...
High-purity magnesium (Mg) is a promising biodegradable metal for oral and maxillofacial implants. A...
In recent years, Magnesium (Mg) and its alloys as bioresorbable metals have attracted increasing att...
Magnesium and its alloys have gained significant popularity due to their light weight and their pote...
Magnesium (Mg) and its alloys were initially investigated as resorbable orthopaedic biomaterials mor...