Titanium membranes are used for guided bone regeneration in implant therapy. However, as a bioinert material, titanium does not have the ability to accelerate bone formation. Various titanium surface treatments to confer bioactivity have been demonstrated; however, there are concerns about the influence of chemical treatments for thin titanium membranes. This study investigated the influence of surface modifications on the structure of titanium membranes. Titanium membranes of 20 μm thickness were treated with acid or alkali solutions, and we evaluated their surface structure, wettability, thickness, and mechanical strength compared to non-treated membranes. Alkali-treated titanium membranes displayed the formation of nanoscale pore structu...
The primary events occurring in vivo after implant placement are very important in achieving osseoin...
Background Osseointegrated titanium implants are routinely used in clinical dentistry. Although the ...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
Titanium membranes are used for guided bone regeneration in implant therapy. However, as a bioinert ...
Committee members: Elsawa, Sherine; Sciammarella, Federico.Advisor: Vahabzadeh, Sahar.Includes illus...
Titanium and its alloys are the most widespread materials employed in orthopaedic and dental surgery...
Titanium and its alloys have been extensively used for orthopedic and dental applications for their ...
Titanium shows minimal encapsulation when implanted in bone tissue and develops a direct interfacial...
In this study, using electrolytic reducing ionic water (S-100®), a novel surface treatment meth...
Alkali-treated titanium (Ti) with a porous, homogeneous, and uniform nanonetwork structure (TNS) tha...
In the past, several modifications of specific surface properties such as topography, structure, che...
This study investigated whether a novel alkali-based surface modification enhances in vitro minerali...
Chemical and physical methods have been generally used for modifying the surface of titanium implant...
Aim: Titanium dental implants are an important treatment option in the replacement of missing teeth....
Titanium and titanium alloys have been extensively studied for many applications in the area of bone...
The primary events occurring in vivo after implant placement are very important in achieving osseoin...
Background Osseointegrated titanium implants are routinely used in clinical dentistry. Although the ...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...
Titanium membranes are used for guided bone regeneration in implant therapy. However, as a bioinert ...
Committee members: Elsawa, Sherine; Sciammarella, Federico.Advisor: Vahabzadeh, Sahar.Includes illus...
Titanium and its alloys are the most widespread materials employed in orthopaedic and dental surgery...
Titanium and its alloys have been extensively used for orthopedic and dental applications for their ...
Titanium shows minimal encapsulation when implanted in bone tissue and develops a direct interfacial...
In this study, using electrolytic reducing ionic water (S-100®), a novel surface treatment meth...
Alkali-treated titanium (Ti) with a porous, homogeneous, and uniform nanonetwork structure (TNS) tha...
In the past, several modifications of specific surface properties such as topography, structure, che...
This study investigated whether a novel alkali-based surface modification enhances in vitro minerali...
Chemical and physical methods have been generally used for modifying the surface of titanium implant...
Aim: Titanium dental implants are an important treatment option in the replacement of missing teeth....
Titanium and titanium alloys have been extensively studied for many applications in the area of bone...
The primary events occurring in vivo after implant placement are very important in achieving osseoin...
Background Osseointegrated titanium implants are routinely used in clinical dentistry. Although the ...
The large surface area of highly porous titanium structures produced by additive manufacturing can b...