The effects of anodized titanium (Ti) with a potential hydrogen fluoride (HF) acid pretreatment through cathodization on the formation of nano-porous Ti dioxide (TiO2) layer were characterized using field-emission scanning electron microscopy, grazing incidence X-ray diffractometer, and contact angle goniometer. The biocompatibility was determined by 3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide (MTT) test. Analytical results found that a well-aligned nano-porous structure was formed on the anodized Ti surface with HF pretreatment concentration above 0.5%. Microstructure of the nano-porous Ti dioxide surface generated by anodization with HF pretreatment was composed of anatase and rutile phases, while the anodized Ti sample w...
The bone-implant interface influences peri-implant bone healing and osseointegration. Among various ...
Alexandra P Ross, Thomas J WebsterSchool of Engineering and Department of Orthopedics, Brown Univers...
Anodizing could be used for bio-functionalization of the surfaces of titanium alloys. In this study,...
The objective of this study is to investigate in vitro cell-materials interactions using human osteo...
The objective of this investigation is to study the effectiveness of anodized surface of commercial ...
BACKGROUND: Previously, we reported that anodized porous titanium implants have photocatalytic hydro...
Naturally, titanium (Ti) has bioinert surface which is a non-preferred nucleation site for bone-like...
Titanium and its alloys are among widely used biomaterials, particularly in the field of orthopedics...
Among all biomaterials used for bone replacement, it is recognized that both commercially pure titan...
Titanium and its alloys are widely used as biomaterials due to their mechanical, chemical and biolog...
Nanoporous titanium dioxide (TiO2) layers were successfully formed by an electrochemical anodisation...
International audienceThe purpose of this study was to investigate the relationship between the oste...
Background: Several studies proved that anodic oxidation improves osseointegration. This study aimed...
Keywords: Dental implants, sandblasting, nanostructured TiO2, surface morphology. ABSTRACT Titaniu...
The bone-implant interface influences peri-implant bone healing and osseointegration. Among various ...
The bone-implant interface influences peri-implant bone healing and osseointegration. Among various ...
Alexandra P Ross, Thomas J WebsterSchool of Engineering and Department of Orthopedics, Brown Univers...
Anodizing could be used for bio-functionalization of the surfaces of titanium alloys. In this study,...
The objective of this study is to investigate in vitro cell-materials interactions using human osteo...
The objective of this investigation is to study the effectiveness of anodized surface of commercial ...
BACKGROUND: Previously, we reported that anodized porous titanium implants have photocatalytic hydro...
Naturally, titanium (Ti) has bioinert surface which is a non-preferred nucleation site for bone-like...
Titanium and its alloys are among widely used biomaterials, particularly in the field of orthopedics...
Among all biomaterials used for bone replacement, it is recognized that both commercially pure titan...
Titanium and its alloys are widely used as biomaterials due to their mechanical, chemical and biolog...
Nanoporous titanium dioxide (TiO2) layers were successfully formed by an electrochemical anodisation...
International audienceThe purpose of this study was to investigate the relationship between the oste...
Background: Several studies proved that anodic oxidation improves osseointegration. This study aimed...
Keywords: Dental implants, sandblasting, nanostructured TiO2, surface morphology. ABSTRACT Titaniu...
The bone-implant interface influences peri-implant bone healing and osseointegration. Among various ...
The bone-implant interface influences peri-implant bone healing and osseointegration. Among various ...
Alexandra P Ross, Thomas J WebsterSchool of Engineering and Department of Orthopedics, Brown Univers...
Anodizing could be used for bio-functionalization of the surfaces of titanium alloys. In this study,...