Recently, tantalum has been attracting much attention for its anticorrosion resistance and biocompatibility, and it has been widely used in surface modification for implant applications. To improve its osteogenic differentiation of human bone marrow stem cells (hBMSCs), a micro/nano structure has been fabricated on the tantalum coating surface through the combination of anodic oxidation and plasma spraying method. The morphology, composition, and microstructure of the modified coating were comprehensively studied by employing scanning electron microscopy (SEM), X-ray diffraction (XRD) as well as transmission electron microscopy (TEM). The effects of hierarchical structures as well as micro-porous structure of tantalum coating on the behavio...
Currently used implant materials do not suffice the needs of patients mainly due to their poor osseo...
Tantalum (Ta) is increasingly being used in orthopaedic applications owing to its superior non-toxic...
A long-term antibacterial activity of implants without compromising their biocompatibility is highly...
Recently, tantalum has been attracting much attention for its anticorrosion resistance and biocompat...
Tantalum, as a potential metallic implant biomaterial, is attracting more and more attention because...
Tantalum, as a potential metallic implant biomaterial, is attracting more and more attention because...
With its excellent anticorrosion and biocompatibility, tantalum, as a promising endosseous implant o...
Tantalum and its alloys have been investigated as the next generation of orthopedic implant material...
Surface properties such as morphology, roughness and charge density have a strong influence on the i...
Surface properties such as morphology, roughness and charge density have a strong influence on the i...
Ordered surface nanostructures have attracted much attention in biotechnology and biomedical enginee...
Ordered surface nanostructures have attracted much attention in biotechnology and biomedical enginee...
In order to reduce the loosening of dental implants, surface modification with hydroxyapatite (HA) c...
The osteo-regenerative properties of allograft have recently been enhanced by addition of autogenous...
Zirconia has become a new dental implant material because of its excellent esthetics, biocompatibili...
Currently used implant materials do not suffice the needs of patients mainly due to their poor osseo...
Tantalum (Ta) is increasingly being used in orthopaedic applications owing to its superior non-toxic...
A long-term antibacterial activity of implants without compromising their biocompatibility is highly...
Recently, tantalum has been attracting much attention for its anticorrosion resistance and biocompat...
Tantalum, as a potential metallic implant biomaterial, is attracting more and more attention because...
Tantalum, as a potential metallic implant biomaterial, is attracting more and more attention because...
With its excellent anticorrosion and biocompatibility, tantalum, as a promising endosseous implant o...
Tantalum and its alloys have been investigated as the next generation of orthopedic implant material...
Surface properties such as morphology, roughness and charge density have a strong influence on the i...
Surface properties such as morphology, roughness and charge density have a strong influence on the i...
Ordered surface nanostructures have attracted much attention in biotechnology and biomedical enginee...
Ordered surface nanostructures have attracted much attention in biotechnology and biomedical enginee...
In order to reduce the loosening of dental implants, surface modification with hydroxyapatite (HA) c...
The osteo-regenerative properties of allograft have recently been enhanced by addition of autogenous...
Zirconia has become a new dental implant material because of its excellent esthetics, biocompatibili...
Currently used implant materials do not suffice the needs of patients mainly due to their poor osseo...
Tantalum (Ta) is increasingly being used in orthopaedic applications owing to its superior non-toxic...
A long-term antibacterial activity of implants without compromising their biocompatibility is highly...