Background: Recent studies have shown the potential suitability of magnesium alloys as biodegradable implants. The aim of the present study was to compare the soft tissue biocompatibility of MgCa0.8 and commonly used surgical steel in vivo.Methods: A biodegradable magnesium calcium alloy (MgCa0.8) and surgical steel (S316L), as a control, were investigated. Screws of identical geometrical conformation were implanted into the tibiae of 40 rabbits for a postoperative follow up of two, four, six and eight weeks. The tibialis cranialis muscle was in direct vicinity of the screw head and thus embedded in paraffin and histologically and immunohistochemically assessed. Haematoxylin and eosin staining was performed to identify macrophages, giant ce...
Biodegradable alloys and especially magnesium-based alloys are considered by many researchers as mat...
Magnesium (Mg) was originally developed as a degradable metallic biomaterial for orthopaedic applica...
Present investigation focuses on development and detailed characterization of a new Mg alloy sample ...
Abstract Background Recent studies have shown the potential suitability of magnesium alloys as biode...
Degradable magnesium alloys are promising biomaterials for orthopedic applications. The aim of this ...
Background: Magnesium alloys as biodegradable implant materials received much interest in recent yea...
Degradable magnesium alloys are new materials for implants used in orthopedic and trauma surgery. Th...
Magnesium alloys have been investigated in different fields of medicine and represent a promising bi...
The medical field has undergone constant development in recent years, and a segment of this developm...
Background: Magnesium (Mg) is one of the most promising materials for human use in surgery due to ma...
Biodegradable magnesium (Mg) alloys combine the advantages of traditional metallic implants and biod...
Degradable metals hold considerable promise as materials which exhibit higher mechanical properties ...
Nowadays, research in magnesium alloys as a biodegradable implant material has increased. The aim of...
The use of bio-materials in medical applications has risen exponentially in recent years, where app...
AbstractThe microstructure, mechanical property, electrochemical behavior and biocompatibility of ma...
Biodegradable alloys and especially magnesium-based alloys are considered by many researchers as mat...
Magnesium (Mg) was originally developed as a degradable metallic biomaterial for orthopaedic applica...
Present investigation focuses on development and detailed characterization of a new Mg alloy sample ...
Abstract Background Recent studies have shown the potential suitability of magnesium alloys as biode...
Degradable magnesium alloys are promising biomaterials for orthopedic applications. The aim of this ...
Background: Magnesium alloys as biodegradable implant materials received much interest in recent yea...
Degradable magnesium alloys are new materials for implants used in orthopedic and trauma surgery. Th...
Magnesium alloys have been investigated in different fields of medicine and represent a promising bi...
The medical field has undergone constant development in recent years, and a segment of this developm...
Background: Magnesium (Mg) is one of the most promising materials for human use in surgery due to ma...
Biodegradable magnesium (Mg) alloys combine the advantages of traditional metallic implants and biod...
Degradable metals hold considerable promise as materials which exhibit higher mechanical properties ...
Nowadays, research in magnesium alloys as a biodegradable implant material has increased. The aim of...
The use of bio-materials in medical applications has risen exponentially in recent years, where app...
AbstractThe microstructure, mechanical property, electrochemical behavior and biocompatibility of ma...
Biodegradable alloys and especially magnesium-based alloys are considered by many researchers as mat...
Magnesium (Mg) was originally developed as a degradable metallic biomaterial for orthopaedic applica...
Present investigation focuses on development and detailed characterization of a new Mg alloy sample ...