International audienceUltrashort pulse lasers have significant advantages over conventional continuous wave and long pulse lasers for the texturing of metallic surfaces, especially for nanoscale surface structure patterning. Furthermore, ultrafast laser beam polarization allows for the precise control of the spatial alignment of nanotextures imprinted on titanium-based implant surfaces. In this article, we report the biological effect of beam polarization on human mesenchymal stem cell differentiation. We created, on polished titanium-6aluminum-4vanadium (Ti-6Al-4V) plates, a laser-induced periodic surface structure (LIPSS) using linear or azimuthal polarization of infrared beams to generate linear or radial LIPSS, respectively. The main di...
Surface microstructure and chemical composition of the implant are very important for its osseointeg...
Micropatterns which can be controlled precisely were obtained on titanium (Ti) surface by femtosecon...
In this paper, the effect of femtosecond laser nanotexturing of surfaces of Ti6Al4V and Zr implants ...
International audienceUltrashort pulse lasers have significant advantages over conventional continuo...
International audienceThe femtosecond laser processing enabled the structuring of six types of surfa...
AIM: The aim of the present work was to investigate ultrafast laser surface texturing as a surface t...
Abstract Background Titanium surfaces have been modified by various approaches with the aim of impro...
International audienceFemtosecond laser texturing is a promising surface functionalization technolog...
To test nanosize surface patterning for application as implant material, a suitable titanium composi...
The control of the interaction between materials and biological tissues is a key factor to optimize ...
Ultrashort pulsed direct laser interference patterning (DLIP) is used to generate hierarchical line-...
AbstractWe are developing surface modification techniques for dental implants with the aim of reduci...
Selective laser melting manufacture of patient specific Ti implants is serving as a promising approa...
International audienceTitanium alloys are widely used in bio-medical applications for their excellen...
Direct laser interference patterning (DLIP) is used to produce periodic line-like patterns on titani...
Surface microstructure and chemical composition of the implant are very important for its osseointeg...
Micropatterns which can be controlled precisely were obtained on titanium (Ti) surface by femtosecon...
In this paper, the effect of femtosecond laser nanotexturing of surfaces of Ti6Al4V and Zr implants ...
International audienceUltrashort pulse lasers have significant advantages over conventional continuo...
International audienceThe femtosecond laser processing enabled the structuring of six types of surfa...
AIM: The aim of the present work was to investigate ultrafast laser surface texturing as a surface t...
Abstract Background Titanium surfaces have been modified by various approaches with the aim of impro...
International audienceFemtosecond laser texturing is a promising surface functionalization technolog...
To test nanosize surface patterning for application as implant material, a suitable titanium composi...
The control of the interaction between materials and biological tissues is a key factor to optimize ...
Ultrashort pulsed direct laser interference patterning (DLIP) is used to generate hierarchical line-...
AbstractWe are developing surface modification techniques for dental implants with the aim of reduci...
Selective laser melting manufacture of patient specific Ti implants is serving as a promising approa...
International audienceTitanium alloys are widely used in bio-medical applications for their excellen...
Direct laser interference patterning (DLIP) is used to produce periodic line-like patterns on titani...
Surface microstructure and chemical composition of the implant are very important for its osseointeg...
Micropatterns which can be controlled precisely were obtained on titanium (Ti) surface by femtosecon...
In this paper, the effect of femtosecond laser nanotexturing of surfaces of Ti6Al4V and Zr implants ...