Absorbable metals, metals that corrode in physiological environment, constitute a new class of biomaterials intended for temporary medical implant applications. The introduction of these metals has shifted the established paradigm of metal implants from preventing corrosion to its direct application. Interest toward absorbable metals has been growing in the past decade. This is proved by the rapid increase in scientific publication, progressive development of standards, and launching the first commercial products. Iron, magnesium, zinc, and their alloys are the current three absorbable metals families. Magnesium-based metals are the most progressing family with a large data set obtained from both basic and translational research. Iron-based...
Medical implants made of biodegradable materials could be advantageous for temporary applications, s...
The potential of magnesium alloys as bioabsorbable / biodegradable implants for biomedical applicati...
Over the past two decades, significant advancements have been made regarding the material formulatio...
Absorbable metals, metals that corrode in physiological environment, constitute a new class of bioma...
Absorbable metals have the potential to serve as the next generation of temporary medical implant de...
Absorbable metals have shown significant clinical potential for temporary implant applications, wher...
AbstractBiodegradable metals (BMs) are metals and alloys expected to corrode gradually in vivo, with...
Absorbable metals have been introduced as materials to fabricate temporary medical implants. Iron, m...
In the last decade, iron and magnesium, both pure and alloyed, have been extensively studied as pote...
Absorbable metals have been proposed as potential materials for hard tissue scaffolding to offer bot...
Empirical thesis.Bibliography: pages 47-48.1. Introduction -- 2. Literature review -- 3. Experimenta...
This paper work deals with properties of metallic biomaterials in terms of their suitability for use...
Biodegradable metals (BMs) are metals and alloys expected to corrode gradually in vivo, with an appr...
Abstract: The biodegradable magnesium and its alloys are a focus of degradable biomaterials researc...
Magnesium is one of the most active metals and is prone to corrosion. In construction, automotive an...
Medical implants made of biodegradable materials could be advantageous for temporary applications, s...
The potential of magnesium alloys as bioabsorbable / biodegradable implants for biomedical applicati...
Over the past two decades, significant advancements have been made regarding the material formulatio...
Absorbable metals, metals that corrode in physiological environment, constitute a new class of bioma...
Absorbable metals have the potential to serve as the next generation of temporary medical implant de...
Absorbable metals have shown significant clinical potential for temporary implant applications, wher...
AbstractBiodegradable metals (BMs) are metals and alloys expected to corrode gradually in vivo, with...
Absorbable metals have been introduced as materials to fabricate temporary medical implants. Iron, m...
In the last decade, iron and magnesium, both pure and alloyed, have been extensively studied as pote...
Absorbable metals have been proposed as potential materials for hard tissue scaffolding to offer bot...
Empirical thesis.Bibliography: pages 47-48.1. Introduction -- 2. Literature review -- 3. Experimenta...
This paper work deals with properties of metallic biomaterials in terms of their suitability for use...
Biodegradable metals (BMs) are metals and alloys expected to corrode gradually in vivo, with an appr...
Abstract: The biodegradable magnesium and its alloys are a focus of degradable biomaterials researc...
Magnesium is one of the most active metals and is prone to corrosion. In construction, automotive an...
Medical implants made of biodegradable materials could be advantageous for temporary applications, s...
The potential of magnesium alloys as bioabsorbable / biodegradable implants for biomedical applicati...
Over the past two decades, significant advancements have been made regarding the material formulatio...