Magnesium alloys are considered the most suitable absorbable metals for bone fracture fixation implants. The main challenge in absorbable magnesium alloys is their high corrosion/degradation rate that needs to be controlled. Various coatings have been applied to magnesium alloys to slow down their corrosion rates to match their corrosion rate to the regeneration rate of the bone fracture. In this review, a bioactive coating is proposed to slow down the corrosion rate of magnesium alloys and accelerate the bone fracture healing process. The main aim of the bioactive coatings is to enhance the direct attachment of living tissues and thereby facilitate osteoconduction. Hydroxyapatite, collagen type I, recombinant human bone morphogenetic prote...
The world is facing an aging population and also there is an increase in war, and sports related inj...
Medical application materials must meet multiple requirements, and the designed implant must mimic t...
Medical application materials must meet multiple requirements, and the designed implant must mimic t...
Magnesium alloys are considered the most suitable absorbable metals for bone fracture fixation impla...
Magnesium (Mg) was originally developed as a degradable metallic biomaterial for orthopaedic applica...
Magnesium (Mg) was originally developed as a degradable metallic biomaterial for orthopaedic applica...
Historically, cobalt-chromium, stainless steel and titanium alloys have been the main principal mate...
Non-degradable steel and titanium implants used to replace defects of the locomotor system or fabric...
Present investigation focuses on development and detailed characterization of a new Mg alloy sample ...
Magnesium (Mg) alloys are being investigated as a biodegradable metallic biomaterial because of thei...
Magnesium (Mg) alloys are being investigated as a biodegradable metallic biomaterial because of thei...
The market for orthopedic implant alloys has seen significant growth in recent years, and efforts to...
Bone repair materials are rapidly becoming a hot topic in the field of biomedical materials due to b...
Magnesium alloys have great application prospects as ideal bone implant materials. However, their po...
The world is facing an aging population and also there is an increase in war, and sports related inj...
The world is facing an aging population and also there is an increase in war, and sports related inj...
Medical application materials must meet multiple requirements, and the designed implant must mimic t...
Medical application materials must meet multiple requirements, and the designed implant must mimic t...
Magnesium alloys are considered the most suitable absorbable metals for bone fracture fixation impla...
Magnesium (Mg) was originally developed as a degradable metallic biomaterial for orthopaedic applica...
Magnesium (Mg) was originally developed as a degradable metallic biomaterial for orthopaedic applica...
Historically, cobalt-chromium, stainless steel and titanium alloys have been the main principal mate...
Non-degradable steel and titanium implants used to replace defects of the locomotor system or fabric...
Present investigation focuses on development and detailed characterization of a new Mg alloy sample ...
Magnesium (Mg) alloys are being investigated as a biodegradable metallic biomaterial because of thei...
Magnesium (Mg) alloys are being investigated as a biodegradable metallic biomaterial because of thei...
The market for orthopedic implant alloys has seen significant growth in recent years, and efforts to...
Bone repair materials are rapidly becoming a hot topic in the field of biomedical materials due to b...
Magnesium alloys have great application prospects as ideal bone implant materials. However, their po...
The world is facing an aging population and also there is an increase in war, and sports related inj...
The world is facing an aging population and also there is an increase in war, and sports related inj...
Medical application materials must meet multiple requirements, and the designed implant must mimic t...
Medical application materials must meet multiple requirements, and the designed implant must mimic t...