It is widely recognized that surface nanotextures applied on a biomaterial can affect wettability, protein absorption and cellular and/or bacterial adhesion; accordingly, they are nowadays of great interest to promote fast osseointegration and to maintain physiological healing around biomedical implants. In order to be suitable for clinical applications, surface nanotextures must be not only safe and effective, but also, they should be produced through industrial processes scalable to real devices with sustainable processes and costs: this is often a barrier to the market entry. Based on these premises, a chemical surface treatment designed for titanium and its alloys able to produce an oxide layer with a peculiar sponge like nanotexture co...
Several properties of bio-inspired surfaces like chemical composition, surface topography, surface h...
The use of implants in orthopedics and dental practice is a widespread surgical procedure to treat d...
Titanium is commonly used in indwelling devices because of its high biocompatibility, low toxicity a...
Introduction: An ideal surface for orthopedic implants should improve cellular adhesion and reduce b...
Nanotechnology enables the control and modification of the chemical and topographical characteristic...
Nanotechnology enables the control and modification of the chemical and topographical characteristic...
An effective and physiological bone integration and absence of bacterial infection are essential for...
Background: In recent years, many advances have been made in the fields of bioengineering and biotec...
Background: In recent years, many advances have been made in the fields of bioengineering and biotec...
Background: In recent years, many advances have been made in the fields of bioengineering and biotec...
Titanium and its alloys remain the most popular choice as a medical implant material because of its ...
The surface design of titanium implants influences not only the local biological reactions but also ...
One of the most common causes of implant failure is peri-implantitis, which is caused by bacterial b...
The surface design of titanium implants influences not only the local biological reactions but also ...
In implantology, as an alternative approach to the use of antibiotics, direct surface modifications ...
Several properties of bio-inspired surfaces like chemical composition, surface topography, surface h...
The use of implants in orthopedics and dental practice is a widespread surgical procedure to treat d...
Titanium is commonly used in indwelling devices because of its high biocompatibility, low toxicity a...
Introduction: An ideal surface for orthopedic implants should improve cellular adhesion and reduce b...
Nanotechnology enables the control and modification of the chemical and topographical characteristic...
Nanotechnology enables the control and modification of the chemical and topographical characteristic...
An effective and physiological bone integration and absence of bacterial infection are essential for...
Background: In recent years, many advances have been made in the fields of bioengineering and biotec...
Background: In recent years, many advances have been made in the fields of bioengineering and biotec...
Background: In recent years, many advances have been made in the fields of bioengineering and biotec...
Titanium and its alloys remain the most popular choice as a medical implant material because of its ...
The surface design of titanium implants influences not only the local biological reactions but also ...
One of the most common causes of implant failure is peri-implantitis, which is caused by bacterial b...
The surface design of titanium implants influences not only the local biological reactions but also ...
In implantology, as an alternative approach to the use of antibiotics, direct surface modifications ...
Several properties of bio-inspired surfaces like chemical composition, surface topography, surface h...
The use of implants in orthopedics and dental practice is a widespread surgical procedure to treat d...
Titanium is commonly used in indwelling devices because of its high biocompatibility, low toxicity a...