Bone defects are very challenging in orthopedic practice. The ideal bone grafts should provide mechanical support and enhance the bone healing. Biodegradable magnesium (Mg)–based alloys demonstrate good biocompatibility and osteoconductive properties, which are promising biomaterials for bone substitutes. However, the high rate of their biodegradation in human body environment is still challenging. For this scope, synthesis Mg-based composites with bioceramic additives such as HA and titania (TiO2) is a routine to solve this problem. The aim of this study was to evaluate the effect of addition TiO2 nanopowders on the corrosion behavior and mechanical properties of Mg/HA-based nanocomposites fabricated using a milling-pressing-sintering tech...
Recent research on biodegradable magnesium-based implants has been focusing on increasing their mech...
A pH drop during the inflammatory phase during bone regeneration can cause corrosion in TiO2 bone sc...
Titania (TiO2) and magnesium fluoride (MgF2) can be mixed with tricalcium phosphate (β‐Ca3(PO4)2, β‐...
In this study, a biodegradable Mg/HA/TiO2nanocomposite was prepared using a milling-pressing-sinteri...
In the field of orthopedics, magnesium (Mg) and magnesium-based composites as biodegradable material...
The Mg/HA/MgO nanocomposites were fabricated with pure magnesium and the addition of different amoun...
Recently, magnesium-hydroxyapatite composites have shown the potential to serve as biodegradable met...
Magnesium (Mg) and its alloys are potential metals for biodegradable implants because of several ben...
Wide use of titanium and its alloys as biomaterials stems from their low elastic moduli, good fatigu...
Mg and its alloy have shown great potential for orthopaedic and cardiovascular applications due to t...
Magnesium and its alloys are used for biomaterials in orthopedic applications. Such alloys are still...
Biomaterials have been used for more than a century in the human body to improve body functions and ...
Conventional metals such as titanium, stainless steel and platinum possess high strength, corrosionr...
Magnesium and its alloys are used for biomaterials in orthopedic applications. Such alloys are still...
Last few decades has seen enormous growth in terms of bone replacement materials. Relying on their d...
Recent research on biodegradable magnesium-based implants has been focusing on increasing their mech...
A pH drop during the inflammatory phase during bone regeneration can cause corrosion in TiO2 bone sc...
Titania (TiO2) and magnesium fluoride (MgF2) can be mixed with tricalcium phosphate (β‐Ca3(PO4)2, β‐...
In this study, a biodegradable Mg/HA/TiO2nanocomposite was prepared using a milling-pressing-sinteri...
In the field of orthopedics, magnesium (Mg) and magnesium-based composites as biodegradable material...
The Mg/HA/MgO nanocomposites were fabricated with pure magnesium and the addition of different amoun...
Recently, magnesium-hydroxyapatite composites have shown the potential to serve as biodegradable met...
Magnesium (Mg) and its alloys are potential metals for biodegradable implants because of several ben...
Wide use of titanium and its alloys as biomaterials stems from their low elastic moduli, good fatigu...
Mg and its alloy have shown great potential for orthopaedic and cardiovascular applications due to t...
Magnesium and its alloys are used for biomaterials in orthopedic applications. Such alloys are still...
Biomaterials have been used for more than a century in the human body to improve body functions and ...
Conventional metals such as titanium, stainless steel and platinum possess high strength, corrosionr...
Magnesium and its alloys are used for biomaterials in orthopedic applications. Such alloys are still...
Last few decades has seen enormous growth in terms of bone replacement materials. Relying on their d...
Recent research on biodegradable magnesium-based implants has been focusing on increasing their mech...
A pH drop during the inflammatory phase during bone regeneration can cause corrosion in TiO2 bone sc...
Titania (TiO2) and magnesium fluoride (MgF2) can be mixed with tricalcium phosphate (β‐Ca3(PO4)2, β‐...