The use of resorbable magnesium alloys in the design of implants represents a new direction in the healthcare domain. Two main research avenues are currently explored for developing or improving metallic biomaterials: (i) increase of their corrosion resistance by designed compositional and structural modifications, and (ii) functionalization of their surfaces by coating with ceramic or polymeric layers. The main objective of this work was to comparatively assess bio-functional coatings (i.e., highly-crystallized hydroxyapatite and silica-rich glass) deposited by radio-frequency magnetron sputtering (RF-MS) on a biodegradable Mg-0.8Ca alloy (0.8 wt.% of Ca). After probing their morphology (by scanning electron microscopy) and structure (by F...
Hydroxyapatite (HAP) coatings are applied on metallic implant materials to combine mechanical proper...
Abstract: Magnesium and its alloys—a new class of degradable metallic biomaterials—are being increas...
Bioinspired coatings with decreased corrosion rate and enhanced bond strength are at the core of fut...
A thin film of hydroxyapatite (HA) was deposited on AZ31 and Mg-Ca alloys by using radio frequency (...
A thin film of hydroxyapatite (HA) was coated on a magnesium-calcium (Mg-Ca) alloy using radio frequ...
Magnesium and its alloys—a new class of degradable metallic biomaterials—are being increasingly inve...
A thin film of hydroxyapatite (HA) was coated on a magnesium–calcium (Mg–Ca) alloy using radio frequ...
This study aims to analyze hydroxyapatite (HAP) coatings enriched with Mg and Ti prepared by a magne...
The high galvanic corrosion in the physiological environment of Mg-based implant materials is the ma...
The long presence of metal implants such as titanium alloys in physiological environment will cause ...
The use of implants for bone repair has a considerable and successful history. Traditionally, metall...
Magnesium alloys are potential biodegradable materials and have received increasing attention due to...
Recently, magnesium alloys have attracted much attention as a metallic biodegradable implant because...
Design of orthopedic implants is a challenging task to cope with desired properties, therefore, nume...
Biomaterials used for implants may be metallic, ceramic, polymeric or composite. Currently, metals t...
Hydroxyapatite (HAP) coatings are applied on metallic implant materials to combine mechanical proper...
Abstract: Magnesium and its alloys—a new class of degradable metallic biomaterials—are being increas...
Bioinspired coatings with decreased corrosion rate and enhanced bond strength are at the core of fut...
A thin film of hydroxyapatite (HA) was deposited on AZ31 and Mg-Ca alloys by using radio frequency (...
A thin film of hydroxyapatite (HA) was coated on a magnesium-calcium (Mg-Ca) alloy using radio frequ...
Magnesium and its alloys—a new class of degradable metallic biomaterials—are being increasingly inve...
A thin film of hydroxyapatite (HA) was coated on a magnesium–calcium (Mg–Ca) alloy using radio frequ...
This study aims to analyze hydroxyapatite (HAP) coatings enriched with Mg and Ti prepared by a magne...
The high galvanic corrosion in the physiological environment of Mg-based implant materials is the ma...
The long presence of metal implants such as titanium alloys in physiological environment will cause ...
The use of implants for bone repair has a considerable and successful history. Traditionally, metall...
Magnesium alloys are potential biodegradable materials and have received increasing attention due to...
Recently, magnesium alloys have attracted much attention as a metallic biodegradable implant because...
Design of orthopedic implants is a challenging task to cope with desired properties, therefore, nume...
Biomaterials used for implants may be metallic, ceramic, polymeric or composite. Currently, metals t...
Hydroxyapatite (HAP) coatings are applied on metallic implant materials to combine mechanical proper...
Abstract: Magnesium and its alloys—a new class of degradable metallic biomaterials—are being increas...
Bioinspired coatings with decreased corrosion rate and enhanced bond strength are at the core of fut...