Direct laser interference patterning (DLIP) was used to produce periodic patterns on hydroxyapatite. A Nd:YAG laser operating at 266 and 355 nm wavelengths and a pulse duration of 10 ns was used in these experiments. Line- and cross-like patterns with periodical distances of 10 and 20 micron were fabricated with energy densities between 0.6 and 2.4 J/cm2, and pulse numbers from 1 to 100. In the low/middle laser intensity range it was observed that the structure depth increased with the pulse number. However, for higher energies the patterns smudge due to thermal effects. For single pulse laser experiments, increasing of the laser fluence did not produce deeper structures. In addition, the best results were obtained when using low-medium las...
The bioactivity of synthetic bone implants is highly impacted by their surface topography, especiall...
Calcium phosphate bioceramics are recognized as one of the most biocompatible materials and are wide...
Hydroxyapatite (HAP) coatings on bioinert metals such as Ti–6Al–4V are necessary for biomedical appl...
Calcium phosphate coatings, obtained at different deposition rates by pulsed laser deposition with a...
Calcium phosphate coatings, obtained at different deposition rates by pulsed laser deposition with a...
A method of synthesising a biocompatible HAP coating is presented. In the current study, Nd:YAG lase...
We successfully obtaineed the poly-crystallized coatings of the bioactive hydroxyapatite (HAp) on th...
Laser treatment was conducted on plasma sprayed hydroxyapatite (HA) coatings using a Nd-YAG pulse la...
It is well known that micro and sub-micrometer periodical structures play a significant role on the ...
Warstwy z hydroksyapatytu osadzane były na podłożu ze stopu Ti6Al4V z warstwą buforową TiN metodą la...
Direct laser interference patterning (DLIP) is used to produce periodic line-like patterns on titani...
This work presents a novel texture design for implants surface functionalization, through the creati...
Hydroxyapatite is an attractive biomaterial mainly used in bone and tooth implants because it closel...
Calcium phosphate (CaP) coatings are used for obtaining a desired biological response. Usually, CaP ...
Direct laser interference patterning (DLIP) is used to create periodic crater- and pillar-like patte...
The bioactivity of synthetic bone implants is highly impacted by their surface topography, especiall...
Calcium phosphate bioceramics are recognized as one of the most biocompatible materials and are wide...
Hydroxyapatite (HAP) coatings on bioinert metals such as Ti–6Al–4V are necessary for biomedical appl...
Calcium phosphate coatings, obtained at different deposition rates by pulsed laser deposition with a...
Calcium phosphate coatings, obtained at different deposition rates by pulsed laser deposition with a...
A method of synthesising a biocompatible HAP coating is presented. In the current study, Nd:YAG lase...
We successfully obtaineed the poly-crystallized coatings of the bioactive hydroxyapatite (HAp) on th...
Laser treatment was conducted on plasma sprayed hydroxyapatite (HA) coatings using a Nd-YAG pulse la...
It is well known that micro and sub-micrometer periodical structures play a significant role on the ...
Warstwy z hydroksyapatytu osadzane były na podłożu ze stopu Ti6Al4V z warstwą buforową TiN metodą la...
Direct laser interference patterning (DLIP) is used to produce periodic line-like patterns on titani...
This work presents a novel texture design for implants surface functionalization, through the creati...
Hydroxyapatite is an attractive biomaterial mainly used in bone and tooth implants because it closel...
Calcium phosphate (CaP) coatings are used for obtaining a desired biological response. Usually, CaP ...
Direct laser interference patterning (DLIP) is used to create periodic crater- and pillar-like patte...
The bioactivity of synthetic bone implants is highly impacted by their surface topography, especiall...
Calcium phosphate bioceramics are recognized as one of the most biocompatible materials and are wide...
Hydroxyapatite (HAP) coatings on bioinert metals such as Ti–6Al–4V are necessary for biomedical appl...