Magnesium and magnesium alloys have great application potential in the field of orthopaedics. Compared with traditional inorganic nonmetallic materials and medical polymer materials, magnesium alloys have many advantages, such as better strength, toughness, fatigue resistance, and easy processing. Its mechanical properties are suitable and controllable. It can meet the same elastic modulus, cell compatibility, and biodegradability as human cortical bone. There are also some drawbacks for biodegradability, as magnesium and its alloys, with their high degradation rate, can cause insufficient integrity of the mechanical properties. This paper summarises the research on magnesium and its magnesium alloy materials in the field of bone implantati...
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...
Medical application materials must meet multiple requirements, and the designed implant must mimic t...
Abstract: The biodegradable magnesium and its alloys are a focus of degradable biomaterials researc...
Bone repair materials are rapidly becoming a hot topic in the field of biomedical materials due to b...
Biodegradable alloys and especially magnesium-based alloys are considered by many researchers as mat...
In the last six decades, it has been made a great advancement in the field of engineering material e...
In the last six decades, it has been made a great advancement in the field of engineering material e...
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...
In the analytical review of the literature the main stages of development of biodegradable magnesium...
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...
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...
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...
Medical application materials must meet multiple requirements, and the designed implant must mimic t...
Abstract: The biodegradable magnesium and its alloys are a focus of degradable biomaterials researc...
Bone repair materials are rapidly becoming a hot topic in the field of biomedical materials due to b...
Biodegradable alloys and especially magnesium-based alloys are considered by many researchers as mat...
In the last six decades, it has been made a great advancement in the field of engineering material e...
In the last six decades, it has been made a great advancement in the field of engineering material e...
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...
In the analytical review of the literature the main stages of development of biodegradable magnesium...
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...
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...
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...
Medical application materials must meet multiple requirements, and the designed implant must mimic t...