The development direction of bioresorbable fixing structures is currently very relevant because it corresponds to the priority areas in worldwide biotechnology development. Magnesium (Mg)-based alloys are gaining high levels of attention due to their promising potential use as the basis for fixating structures. These alloys can be an alternative to non-degradable metal implants in orthopedics, maxillofacial surgery, neurosurgery, and veterinary medicine. In our study, we formulated a Mg-2Zn-2Ga alloy, prepared pins, and analyzed their biodegradation level based on SEM (scanning electron microscopy) and EDX (energy-dispersive X-ray analysis) after carrying out an experimental study on rats. We assessed the resorption parameters 1, 3, and 6 m...
Magnesium-zinc-calcium (Mg-Zn-Ca) alloys have attracted increasing attention for biomedical implant ...
Pure magnesium possesses similar mechanical properties compared to natural human bone, which helps t...
In magnesium alloys, the components used modify the alloy properties. For magnesium implants in cont...
Biodegradable alloys and especially magnesium-based alloys are considered by many researchers as mat...
Bone repair materials are rapidly becoming a hot topic in the field of biomedical materials due to b...
Biodegradable magnesium (Mg) alloys combine the advantages of traditional metallic implants and biod...
In the present study, pins made from the novel Mg-2Zn-2Ga alloy were installed within the femoral bo...
Inert but biocompatible metals and biodegradable polymers are currently used as orthopedic fixations...
In fracture management with open reduction and internal fixation with metallic implant, secondary pr...
Abstract: The biodegradable magnesium and its alloys are a focus of degradable biomaterials researc...
The use of bio-materials in medical applications has risen exponentially in recent years, where app...
The potential of Magnesium (Mg)-based temporary biodegradable metallic implants relies most heavily ...
Biodegradable magnesium (Mg) alloys exhibit improved mechanical properties compared to degradable po...
The combination of high strength, light weight, and natural biodegradability renders magnesium (Mg) ...
We have performed a comparative analysis of existing materials for the fabrication of implants and r...
Magnesium-zinc-calcium (Mg-Zn-Ca) alloys have attracted increasing attention for biomedical implant ...
Pure magnesium possesses similar mechanical properties compared to natural human bone, which helps t...
In magnesium alloys, the components used modify the alloy properties. For magnesium implants in cont...
Biodegradable alloys and especially magnesium-based alloys are considered by many researchers as mat...
Bone repair materials are rapidly becoming a hot topic in the field of biomedical materials due to b...
Biodegradable magnesium (Mg) alloys combine the advantages of traditional metallic implants and biod...
In the present study, pins made from the novel Mg-2Zn-2Ga alloy were installed within the femoral bo...
Inert but biocompatible metals and biodegradable polymers are currently used as orthopedic fixations...
In fracture management with open reduction and internal fixation with metallic implant, secondary pr...
Abstract: The biodegradable magnesium and its alloys are a focus of degradable biomaterials researc...
The use of bio-materials in medical applications has risen exponentially in recent years, where app...
The potential of Magnesium (Mg)-based temporary biodegradable metallic implants relies most heavily ...
Biodegradable magnesium (Mg) alloys exhibit improved mechanical properties compared to degradable po...
The combination of high strength, light weight, and natural biodegradability renders magnesium (Mg) ...
We have performed a comparative analysis of existing materials for the fabrication of implants and r...
Magnesium-zinc-calcium (Mg-Zn-Ca) alloys have attracted increasing attention for biomedical implant ...
Pure magnesium possesses similar mechanical properties compared to natural human bone, which helps t...
In magnesium alloys, the components used modify the alloy properties. For magnesium implants in cont...