Plasma of Argon was demonstrated to improve protein and cell adhesion on implant surface. On the other hand, increased surface energy and hydrophilicity could potentially amplify the risks of implant surface contamination during clinical phases, risks that have not yet been evaluated in Literature. The aim of the present in vitro study was to verify if Plasma treatment could alter the implant surface characteristics and its ability to remain sterile
© 2019 Elsevier B.V. Biofilm contamination on an implanted medical device represents a particularity...
The biocompatibility of an implant depends upon the material it is composed of, in addition to the p...
OBJECTIVE: Even though roughened titanium (Ti) and Ti alloys have been clinically used as dental imp...
Treatments for enhancing surface energy were studied in an effort to create a more favorable environ...
This paper aims to review the evidence of the cellular activity on titanium samples exposed to Plasm...
This study investigated the effect of an Argon-based atmospheric pressure plasma (APP) surface treat...
OBJECTIVE Plasma of argon treatment was demonstrated to increase material surface energy leading to...
Item does not contain fulltextNumerous studies have shown that the physicochemical properties of bio...
International audienceThe plasma state consists of a mixture of charged and neutral particles includ...
Numerous studies have shown that the physicochemical properties of biomaterials can control cell act...
Background: The treatment of the surface of titanium implants with argon plasma improved its hydroph...
Understanding the effects that sterilization methods have on the surface of a biomaterial is a prere...
Michelle Griffin,1–3 Robert Palgrave,4 Víctor G Baldovino-Medrano,5 Peter E Butler,1&nd...
AbstractTitanium is one of the most used materials in implants and changes in its surface can modify...
The surface energy of the implant surface has an impact on osseointegration. In this study, 2 surfac...
© 2019 Elsevier B.V. Biofilm contamination on an implanted medical device represents a particularity...
The biocompatibility of an implant depends upon the material it is composed of, in addition to the p...
OBJECTIVE: Even though roughened titanium (Ti) and Ti alloys have been clinically used as dental imp...
Treatments for enhancing surface energy were studied in an effort to create a more favorable environ...
This paper aims to review the evidence of the cellular activity on titanium samples exposed to Plasm...
This study investigated the effect of an Argon-based atmospheric pressure plasma (APP) surface treat...
OBJECTIVE Plasma of argon treatment was demonstrated to increase material surface energy leading to...
Item does not contain fulltextNumerous studies have shown that the physicochemical properties of bio...
International audienceThe plasma state consists of a mixture of charged and neutral particles includ...
Numerous studies have shown that the physicochemical properties of biomaterials can control cell act...
Background: The treatment of the surface of titanium implants with argon plasma improved its hydroph...
Understanding the effects that sterilization methods have on the surface of a biomaterial is a prere...
Michelle Griffin,1–3 Robert Palgrave,4 Víctor G Baldovino-Medrano,5 Peter E Butler,1&nd...
AbstractTitanium is one of the most used materials in implants and changes in its surface can modify...
The surface energy of the implant surface has an impact on osseointegration. In this study, 2 surfac...
© 2019 Elsevier B.V. Biofilm contamination on an implanted medical device represents a particularity...
The biocompatibility of an implant depends upon the material it is composed of, in addition to the p...
OBJECTIVE: Even though roughened titanium (Ti) and Ti alloys have been clinically used as dental imp...