Contains fulltext : 175027.pdf (publisher's version ) (Closed access)This study investigated whether a novel alkali-based surface modification enhances in vitro mineralization as well as in vivo bone formation around titanium (Ti) implants in a femoral condyle model of 36 male Wister rats. All implant surfaces were grit-blasted and then received either acid-etching treatment, alkali-based treatment, or were left untreated (controls). Histological and histomorphometrical analyses were performed on retrieved specimens after 4 and 8weeks of healing to assess peri-implant bone formation. Results of implants surface characterisation showed notable differences in the topography and composition of alkali-treated surfaces, reflect...
Multi-directional forging (MDFing) of titanium drastically improved its mechanical properties due to...
Background. Scientific evidence in the field of implant dentistry of the past 20 years established t...
The aim of the study was to compare Ca and P formation (CaP) and subsequent bone cell response of a ...
This study investigated whether a novel alkali-based surface modification enhances in vitro minerali...
Contains fulltext : 81306.pdf (publisher's version ) (Closed access)The enzyme alk...
The purpose of this study was to investigate the osseointegration aspects of alkali-treated implants...
grantor: University of TorontoThis study tests the hypothesis that surface topographical ...
Titanium shows minimal encapsulation when implanted in bone tissue and develops a direct interfacial...
Achieving fast and long-term osseointegration is one of the major goals in dental implant design. Ph...
The aims of this study were to create experimental implants by coating rough plastic surfaces with a...
Contains fulltext : 69790.pdf (publisher's version ) (Closed access)OBJECTIVES: Hi...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
Contains fulltext : 80278.pdf (publisher's version ) (Closed access)Surface modifi...
This study was conducted to evaluate the effect of polyphosphoric acid (PPA) treatment on bone regen...
Abstract: The authors describe a new type of titanium (Ti) implant as a Modi-anodized (ANO) Ti impla...
Multi-directional forging (MDFing) of titanium drastically improved its mechanical properties due to...
Background. Scientific evidence in the field of implant dentistry of the past 20 years established t...
The aim of the study was to compare Ca and P formation (CaP) and subsequent bone cell response of a ...
This study investigated whether a novel alkali-based surface modification enhances in vitro minerali...
Contains fulltext : 81306.pdf (publisher's version ) (Closed access)The enzyme alk...
The purpose of this study was to investigate the osseointegration aspects of alkali-treated implants...
grantor: University of TorontoThis study tests the hypothesis that surface topographical ...
Titanium shows minimal encapsulation when implanted in bone tissue and develops a direct interfacial...
Achieving fast and long-term osseointegration is one of the major goals in dental implant design. Ph...
The aims of this study were to create experimental implants by coating rough plastic surfaces with a...
Contains fulltext : 69790.pdf (publisher's version ) (Closed access)OBJECTIVES: Hi...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
Contains fulltext : 80278.pdf (publisher's version ) (Closed access)Surface modifi...
This study was conducted to evaluate the effect of polyphosphoric acid (PPA) treatment on bone regen...
Abstract: The authors describe a new type of titanium (Ti) implant as a Modi-anodized (ANO) Ti impla...
Multi-directional forging (MDFing) of titanium drastically improved its mechanical properties due to...
Background. Scientific evidence in the field of implant dentistry of the past 20 years established t...
The aim of the study was to compare Ca and P formation (CaP) and subsequent bone cell response of a ...