A pH drop during the inflammatory phase during bone regeneration can cause corrosion in TiO2 bone scaffolds and the loss of compressive strength. Corrosion as ion leaching and dissolution is confined to grain boundaries. Cationic doping of TiO2 showed to increase the compressive strength but increased the amount of impurities in grain boundaries as well. Therefore, this study showed the different grain boundary formation for Ca, Sr and Mg doped scaffolds and their corrosion behavior. After corrosion, the amorphous phase in grain boundaries was dissolved in all doped scaffolds. Differences occurred due to the formation of an additional crystalline phase in Sr doped scaffolds. The presence of an amorphous and crystalline phase led to an inhom...
Magnesium alloys are presently under investigation as promising biodegradable implant materials with...
99 p.Metallic materials are essential element for biomaterials to assist with the repair or replacem...
Titanium dioxide (TiO2) is a biocompatible material with good osteoconductive properties. It has bee...
A pH drop during the inflammatory phase during bone regeneration can cause corrosion in TiO2 bone sc...
Maintaining sufficient mechanical support during bone healing is an essential property for ceramic b...
Bone defects are very challenging in orthopedic practice. The ideal bone grafts should provide mecha...
In this study, a biodegradable Mg/HA/TiO2nanocomposite was prepared using a milling-pressing-sinteri...
Biodegradable scaffolds have been researched extensively over the years due to their promise in rege...
TiO2 scaffolds have previously shown to have promising osteoconductive properties in previous in viv...
Thesis (Ph.D.), Program in Engineering Science, Washington State UniversityThe objective of this res...
Magnesium alloys are presently under investigation as promising biodegradable implant materials with...
Samples of porous Ti metal were subjected to different acid and heat treatments. Ectopic bone format...
Increasing bone formation at endosseous titanium implants may be achieved by modification of topogra...
The growth of the dental implant market increases the concern regarding the quality, efficiency, and...
Magnesium is a type of reactive metal, and is susceptible to galvanic corrosion. In the present stud...
Magnesium alloys are presently under investigation as promising biodegradable implant materials with...
99 p.Metallic materials are essential element for biomaterials to assist with the repair or replacem...
Titanium dioxide (TiO2) is a biocompatible material with good osteoconductive properties. It has bee...
A pH drop during the inflammatory phase during bone regeneration can cause corrosion in TiO2 bone sc...
Maintaining sufficient mechanical support during bone healing is an essential property for ceramic b...
Bone defects are very challenging in orthopedic practice. The ideal bone grafts should provide mecha...
In this study, a biodegradable Mg/HA/TiO2nanocomposite was prepared using a milling-pressing-sinteri...
Biodegradable scaffolds have been researched extensively over the years due to their promise in rege...
TiO2 scaffolds have previously shown to have promising osteoconductive properties in previous in viv...
Thesis (Ph.D.), Program in Engineering Science, Washington State UniversityThe objective of this res...
Magnesium alloys are presently under investigation as promising biodegradable implant materials with...
Samples of porous Ti metal were subjected to different acid and heat treatments. Ectopic bone format...
Increasing bone formation at endosseous titanium implants may be achieved by modification of topogra...
The growth of the dental implant market increases the concern regarding the quality, efficiency, and...
Magnesium is a type of reactive metal, and is susceptible to galvanic corrosion. In the present stud...
Magnesium alloys are presently under investigation as promising biodegradable implant materials with...
99 p.Metallic materials are essential element for biomaterials to assist with the repair or replacem...
Titanium dioxide (TiO2) is a biocompatible material with good osteoconductive properties. It has bee...