In an effort to generate titanium surfaces for implants with improved osseointegration, we used direct laser interference patterning (DLIP) to modify the surface of pure titanium grade 4 of four different structures. We assessed in vitro cytoxicity and cell attachment, as well as the viability and proliferation of cells cultured directly on the surfaces. Attachment of the cells to the modified surfaces was comparably good compared to that of cells on gritblasted and acid-etched reference titanium surfaces. In concordance with this, viability and proliferation of the cells directly cultured on the specimens were similar on all the titanium surfaces, regardless of the laser modification, indicating good cytocompatibility
Textured implant surfaces with micrometer and sub-micrometer features can improve contact properties...
Titanium and its alloys are important biomedical materials. It is known that the surface texture of ...
Recently, the production of well-defined patterned surfaces with random or regular micro and nano-fe...
Direct laser interference patterning (DLIP) is used to produce periodic line-like patterns on titani...
Abstract Background Titanium surfaces have been modified by various approaches with the aim of impro...
Nanostructured titanium has become a useful material for biomedical applications such as dental impl...
Nanostructured titanium has become a useful material for biomedical applications such as dental impl...
The response of human osteoblast-like osteosarcoma cells (MG63) to surface modification of Ti-6Al-4V...
Textured implant surfaces with micrometer and sub-micrometer features can improve contact properties...
Generally, materials with high biocompatibility are more appropriate for bone and tissue trans-plant...
Loosening of orthodontic and orthopedic implants is a critical and common clinical problem. To minim...
OBJECTIVES: Laser engineering may create hemispherical porosities on titanium surfaces obtaining reg...
AbstractTitanium and its alloys are important biomedical materials. It is known that the surface tex...
International audienceThe paper investigates how the surface relief of an implant affects cell behav...
International audienceThe paper investigates how the surface relief of an implant affects cell behav...
Textured implant surfaces with micrometer and sub-micrometer features can improve contact properties...
Titanium and its alloys are important biomedical materials. It is known that the surface texture of ...
Recently, the production of well-defined patterned surfaces with random or regular micro and nano-fe...
Direct laser interference patterning (DLIP) is used to produce periodic line-like patterns on titani...
Abstract Background Titanium surfaces have been modified by various approaches with the aim of impro...
Nanostructured titanium has become a useful material for biomedical applications such as dental impl...
Nanostructured titanium has become a useful material for biomedical applications such as dental impl...
The response of human osteoblast-like osteosarcoma cells (MG63) to surface modification of Ti-6Al-4V...
Textured implant surfaces with micrometer and sub-micrometer features can improve contact properties...
Generally, materials with high biocompatibility are more appropriate for bone and tissue trans-plant...
Loosening of orthodontic and orthopedic implants is a critical and common clinical problem. To minim...
OBJECTIVES: Laser engineering may create hemispherical porosities on titanium surfaces obtaining reg...
AbstractTitanium and its alloys are important biomedical materials. It is known that the surface tex...
International audienceThe paper investigates how the surface relief of an implant affects cell behav...
International audienceThe paper investigates how the surface relief of an implant affects cell behav...
Textured implant surfaces with micrometer and sub-micrometer features can improve contact properties...
Titanium and its alloys are important biomedical materials. It is known that the surface texture of ...
Recently, the production of well-defined patterned surfaces with random or regular micro and nano-fe...