Titanium (Ti) and its alloys are widely used in dental implants due to their favorable mechanical properties and biocompatibility. Surface characteristics, including physical and chemical properties, are crucial factors to enhance the osteogenesis performance of Ti. The aim of this study is to evaluate amino group surface modification to facilitate the osteogenic potential and bone repair of dental implants both\ua0in vitro\ua0and\ua0in vivo. Herein, amino group-modified Ti surfaces were constructed via the plasma-enhanced chemical vapor deposition (PECVD) technique with an allylamine monomer. The adhesion, proliferation, alkaline phosphate activity and osteogenesis-related genetic expression of MG-63 cells on the surfaces were performed\ua...
Chemical composition and topography of titanium surface are important factors to improve osteointegr...
Two types of surface treatments (Low pressure metal organic chemical vapor deposition (Ti-MOCVD) and...
Two types of surface treatments (Low pressure metal organic chemical vapor deposition (Ti-MOCVD) and...
Background: Surface properties of titanium implants play an important role in osseointegration. From...
Plasma surface activation and plasma polymers deposition are promising technologies capable to modul...
Plasma surface activation and plasma polymers deposition are promising technologies capable to modul...
Plasma surface activation and plasma polymers deposition are promising technologies capable to modul...
Plasma surface activation and plasma polymers deposition are promising technologies capable to modul...
Plasma surface activation and plasma polymers deposition are promising technologies capable to modul...
Plasma surface activation and plasma polymers deposition are promising technologies capable to modul...
Abstract The objective of this study is to further investigate the feasibility of Zinc–Titanium impl...
Titanium is the most widely used material in orthopaedic and dental implantoprosthesis due to its su...
Titanium is the most widely used material in orthopaedic and dental implantoprosthesis due to its su...
Titanium is among the most used materials for the production of medical and dental prostheses becaus...
Chemical composition and topography of titanium surface are important factors to improve osteointegr...
Chemical composition and topography of titanium surface are important factors to improve osteointegr...
Two types of surface treatments (Low pressure metal organic chemical vapor deposition (Ti-MOCVD) and...
Two types of surface treatments (Low pressure metal organic chemical vapor deposition (Ti-MOCVD) and...
Background: Surface properties of titanium implants play an important role in osseointegration. From...
Plasma surface activation and plasma polymers deposition are promising technologies capable to modul...
Plasma surface activation and plasma polymers deposition are promising technologies capable to modul...
Plasma surface activation and plasma polymers deposition are promising technologies capable to modul...
Plasma surface activation and plasma polymers deposition are promising technologies capable to modul...
Plasma surface activation and plasma polymers deposition are promising technologies capable to modul...
Plasma surface activation and plasma polymers deposition are promising technologies capable to modul...
Abstract The objective of this study is to further investigate the feasibility of Zinc–Titanium impl...
Titanium is the most widely used material in orthopaedic and dental implantoprosthesis due to its su...
Titanium is the most widely used material in orthopaedic and dental implantoprosthesis due to its su...
Titanium is among the most used materials for the production of medical and dental prostheses becaus...
Chemical composition and topography of titanium surface are important factors to improve osteointegr...
Chemical composition and topography of titanium surface are important factors to improve osteointegr...
Two types of surface treatments (Low pressure metal organic chemical vapor deposition (Ti-MOCVD) and...
Two types of surface treatments (Low pressure metal organic chemical vapor deposition (Ti-MOCVD) and...