The surface topography and chemistry of titanium implants are important factors for successful osseointegration. However, chemical modification of an implant surface using currently available methods often results in the disruption of topographical features and the loss of beneficial effects during the shelf life of the implant. Therefore, the aim of this study was to apply the recently highlighted portable non-thermal atmospheric pressure plasma jet (NTAPPJ), elicited from one of two different gas sources (nitrogen and air), to TiO2 nanotube surfaces to further improve their osteogenic properties while preserving the topographical morphology. The surface treatment was performed before implantation to avoid age-related decay. The surface ch...
This research focused on the to modification of the surface structure of titanium implants with nano...
Titanium and titanium alloys exhibit a unique combination of strength and biocompatibility, which en...
The highly ordered titanium dioxide nanotube coatings were produced under various electrochemical co...
The surface topography and chemistry of titanium implants are important factors for successful osseo...
Titanium implants are well known for their biocompatibility, especially if bioinertness is desired, ...
The surface molecular chemistry, such as amine functionality, of biomaterials plays a crucial role i...
The aim of this study was to evaluate the osseointegration of implants which were surface-treated wi...
Titanium (Ti) is a primary material used for dental implants, and the sandblasted, large-grit, and a...
Here, we investigated the possible use of the technology known as non-thermal atmospheric pressure p...
In the present study the biological response to various nanotopographic features after gaseous plasm...
Titanium oxide nanotube layer formed by plasma electrolytic oxidation (PEO) is known to be excellent...
The lack of osseointegration and implant-related infections are two major complications leading to f...
The lack of osseointegration and implant-related infections are two major complications leading to f...
Nanoscale topography on various titanium surfaces has already been shown to improve vascular respons...
Although titanium (Ti) alloys have been widely used as implant materials, the bioinertness of pristi...
This research focused on the to modification of the surface structure of titanium implants with nano...
Titanium and titanium alloys exhibit a unique combination of strength and biocompatibility, which en...
The highly ordered titanium dioxide nanotube coatings were produced under various electrochemical co...
The surface topography and chemistry of titanium implants are important factors for successful osseo...
Titanium implants are well known for their biocompatibility, especially if bioinertness is desired, ...
The surface molecular chemistry, such as amine functionality, of biomaterials plays a crucial role i...
The aim of this study was to evaluate the osseointegration of implants which were surface-treated wi...
Titanium (Ti) is a primary material used for dental implants, and the sandblasted, large-grit, and a...
Here, we investigated the possible use of the technology known as non-thermal atmospheric pressure p...
In the present study the biological response to various nanotopographic features after gaseous plasm...
Titanium oxide nanotube layer formed by plasma electrolytic oxidation (PEO) is known to be excellent...
The lack of osseointegration and implant-related infections are two major complications leading to f...
The lack of osseointegration and implant-related infections are two major complications leading to f...
Nanoscale topography on various titanium surfaces has already been shown to improve vascular respons...
Although titanium (Ti) alloys have been widely used as implant materials, the bioinertness of pristi...
This research focused on the to modification of the surface structure of titanium implants with nano...
Titanium and titanium alloys exhibit a unique combination of strength and biocompatibility, which en...
The highly ordered titanium dioxide nanotube coatings were produced under various electrochemical co...