Thrombosis and restenosis are the most common problems during insertion of biocompatible implants like titanium stents into human blood, due to aggregation of platelets on their surfaces. Because of this reason, we studied the response of blood platelets to a plasma treated titanium surface. The aim was to design a functionalized surface which would repel blood platelets or prevent their adhesion. Therefore, we functionalized surfaces with low-temperature inductively coupled oxygen plasma treatment, which in the first stage cleaned the surface of titanium, and in the second promoted incorporation of oxygen functional groups as well as the growth of a titanium dioxide film. In this paper we show that oxygen atoms or oxygen containing groups ...
Titanium implant surface modification is a key strategy used to enhance osseointegration. Platelets ...
Objective(s): Titanium oxides are known to be appropriate hemocompatible materials which are sugge...
The release of growth factors from platelets, mediated by the coagulation and the complement system,...
The research presented herein follows an urgent global need for the development of novel surface eng...
Oxygen plasma with different treatment powers and durations was utilized to modify the biomedical pu...
The research presented herein follows an urgent global need for the development of novel surface eng...
AbstractTitanium is one of the most used materials in implants and changes in its surface can modify...
Titanium and Ti6Al4V have been treated by oxygen-plasma immersion ion implantation (O2-PIII) to form...
In the present study the biological response to various nanotopographic features after gaseous plasm...
OBJECTIVE: This research was designed to investigate the effects of low pressure radio-frequency (RF...
This research was designed to investigate the effects of low pressure radio-frequency (RF) oxygen pl...
© 2019 Elsevier B.V. Biofilm contamination on an implanted medical device represents a particularity...
The main theme of the present thesis is controlled preparation and characterization of oxidized tita...
Objective: Surface-modified titanium material was prepared to explore its corrosion resistance and m...
Ultrafine-grained pure titanium prepared by equal-channel angular pressing has favorable mechanical ...
Titanium implant surface modification is a key strategy used to enhance osseointegration. Platelets ...
Objective(s): Titanium oxides are known to be appropriate hemocompatible materials which are sugge...
The release of growth factors from platelets, mediated by the coagulation and the complement system,...
The research presented herein follows an urgent global need for the development of novel surface eng...
Oxygen plasma with different treatment powers and durations was utilized to modify the biomedical pu...
The research presented herein follows an urgent global need for the development of novel surface eng...
AbstractTitanium is one of the most used materials in implants and changes in its surface can modify...
Titanium and Ti6Al4V have been treated by oxygen-plasma immersion ion implantation (O2-PIII) to form...
In the present study the biological response to various nanotopographic features after gaseous plasm...
OBJECTIVE: This research was designed to investigate the effects of low pressure radio-frequency (RF...
This research was designed to investigate the effects of low pressure radio-frequency (RF) oxygen pl...
© 2019 Elsevier B.V. Biofilm contamination on an implanted medical device represents a particularity...
The main theme of the present thesis is controlled preparation and characterization of oxidized tita...
Objective: Surface-modified titanium material was prepared to explore its corrosion resistance and m...
Ultrafine-grained pure titanium prepared by equal-channel angular pressing has favorable mechanical ...
Titanium implant surface modification is a key strategy used to enhance osseointegration. Platelets ...
Objective(s): Titanium oxides are known to be appropriate hemocompatible materials which are sugge...
The release of growth factors from platelets, mediated by the coagulation and the complement system,...