Porous titanium foam is now a standard material for various dental and orthopedic applications due to its light weight, high strength, and full biocompatibility properties. In practical biomedical applications, outer surface geometry and porosity topology significantly influence the adherence between implant and neighboring bone. New microfabrication technologies, such as micromilling and laser micromachining opened new technological possibilities for shape generation of this class of products. Besides typical geometric alterations, these manufacturing techniques enable a better control of the surface roughness that in turn affects to a large extent the friction between implant and surrounding bone tissue. This paper proposes an image analy...
The purpose of this study was to define the surface properties of prepared titanium (Ti) disks, whic...
OBJECTIVES: Laser engineering may create hemispherical porosities on titanium surfaces obtaining reg...
Porous structures are used in orthopaedics to promote biological fixation between metal implant and ...
Porous titanium, characterized by interconnected and large open-cell structures, constitutes one of ...
Ti foams are mesoporous structured materials that are characterized by their high surface area and i...
Micro-end milling is one of the promising methods for rapid fabrication of features with 3D complex ...
Porous titanium (Ti) offers several key attributes as a biomedical material. Among the known charact...
Powder metallurgy techniques have been used to produce controlled porous structures, such as the por...
Recently, an increasing amount of research has focused on the biological and mechanical behavior of ...
Surface texturing, using micro-milling, has promising applications in the industry of medical implan...
Porous titanium (Ti) offers several key attributes as a biomedical material. Among the known charact...
Pure titanium and some of its alloys are currently considered as the most attractive metallic materi...
This research focuses on the porous design, metal additive manufacture and surface polishing metho...
Properties like good corrosion resistance and biocompatibility as well as satisfactory mechanical re...
Nowadays, post-surgical or post-accidental bone loss can be substituted by custom-made scaffolds fab...
The purpose of this study was to define the surface properties of prepared titanium (Ti) disks, whic...
OBJECTIVES: Laser engineering may create hemispherical porosities on titanium surfaces obtaining reg...
Porous structures are used in orthopaedics to promote biological fixation between metal implant and ...
Porous titanium, characterized by interconnected and large open-cell structures, constitutes one of ...
Ti foams are mesoporous structured materials that are characterized by their high surface area and i...
Micro-end milling is one of the promising methods for rapid fabrication of features with 3D complex ...
Porous titanium (Ti) offers several key attributes as a biomedical material. Among the known charact...
Powder metallurgy techniques have been used to produce controlled porous structures, such as the por...
Recently, an increasing amount of research has focused on the biological and mechanical behavior of ...
Surface texturing, using micro-milling, has promising applications in the industry of medical implan...
Porous titanium (Ti) offers several key attributes as a biomedical material. Among the known charact...
Pure titanium and some of its alloys are currently considered as the most attractive metallic materi...
This research focuses on the porous design, metal additive manufacture and surface polishing metho...
Properties like good corrosion resistance and biocompatibility as well as satisfactory mechanical re...
Nowadays, post-surgical or post-accidental bone loss can be substituted by custom-made scaffolds fab...
The purpose of this study was to define the surface properties of prepared titanium (Ti) disks, whic...
OBJECTIVES: Laser engineering may create hemispherical porosities on titanium surfaces obtaining reg...
Porous structures are used in orthopaedics to promote biological fixation between metal implant and ...