After decades of developing strategies to minimize the corrosion of metallic biomaterials, there is now an increasing interest to use corrodible metals in a number of medical device applications. The term "biodegradable metal" (BM) has been used worldwide to describe these new kinds of degradable metallic biomaterials for medical applications and there were many new findings reported over the last decade. In this paper, the definition of BM and its classification are given for the first time, along with the summary of the degradation mechanisms of BMs and its environmental influencing factors, which includes the degeneration of mechanical integrity and the metabolism of the degradation products. The recently-developed representati...
Mg and its alloys become natural biomaterials as the elemental Mg is found in the human body in abun...
Traditional metallic biomaterials for orthopedic implants require materials exhibiting excellent cor...
During the last decade, translational research on biodegradable metallic materials has shown the fea...
AbstractBiodegradable metals (BMs) are metals and alloys expected to corrode gradually in vivo, with...
Biodegradable metals (BMs) are metals and alloys expected to corrode gradually in vivo, with an appr...
Biomaterials have been used for more than a century in the human body to improve body functions and ...
The use of bio-materials in medical applications has risen exponentially in recent years, where app...
The combination of high strength, light weight, and natural biodegradability renders magnesium (Mg) ...
Abstract Magnesium alloys attracted great attention as a new kind of degradable biomaterials. One re...
In the last six decades, it has been made a great advancement in the field of engineering material e...
The global world is facing aging population and this ignites the interest for medical advances to ke...
Magnesium (Mg) alloys possess comparable physical and mechanical properties to bone, making them an ...
Bone repair materials are rapidly becoming a hot topic in the field of biomedical materials due to b...
The interest in biocompatible and biodegradable metals, such as magnesium, is mainly related to thei...
In fracture management with open reduction and internal fixation with metallic implant, secondary pr...
Mg and its alloys become natural biomaterials as the elemental Mg is found in the human body in abun...
Traditional metallic biomaterials for orthopedic implants require materials exhibiting excellent cor...
During the last decade, translational research on biodegradable metallic materials has shown the fea...
AbstractBiodegradable metals (BMs) are metals and alloys expected to corrode gradually in vivo, with...
Biodegradable metals (BMs) are metals and alloys expected to corrode gradually in vivo, with an appr...
Biomaterials have been used for more than a century in the human body to improve body functions and ...
The use of bio-materials in medical applications has risen exponentially in recent years, where app...
The combination of high strength, light weight, and natural biodegradability renders magnesium (Mg) ...
Abstract Magnesium alloys attracted great attention as a new kind of degradable biomaterials. One re...
In the last six decades, it has been made a great advancement in the field of engineering material e...
The global world is facing aging population and this ignites the interest for medical advances to ke...
Magnesium (Mg) alloys possess comparable physical and mechanical properties to bone, making them an ...
Bone repair materials are rapidly becoming a hot topic in the field of biomedical materials due to b...
The interest in biocompatible and biodegradable metals, such as magnesium, is mainly related to thei...
In fracture management with open reduction and internal fixation with metallic implant, secondary pr...
Mg and its alloys become natural biomaterials as the elemental Mg is found in the human body in abun...
Traditional metallic biomaterials for orthopedic implants require materials exhibiting excellent cor...
During the last decade, translational research on biodegradable metallic materials has shown the fea...