To improve well-known titanium implants, pores can be used for increasing bone formation and close bone-implant interface. Selective Laser Melting (SLM) enables the production of any geometry and was used for implant production with 250-microm pore size. The used pore size supports vessel ingrowth, as bone formation is strongly dependent on fast vascularization. Additionally, proangiogenic factors promote implant vascularization. To functionalize the titanium with proangiogenic factors, polycaprolactone (PCL) coating can be used. The following proangiogenic factors were examined: vascular endothelial growth factor (VEGF), high mobility group box 1 (HMGB1) and chemokine (C-X-C motif) ligand 12 (CXCL12). As different surfaces lead to differen...
Surface modification of titanium implants is used to enhance osseointegration. The study objective w...
Degradable implant material for bone remodeling that corresponds to the physiological stability of b...
A promising bone graft substitute is porous titanium. Porous titanium, produced by selective laser m...
To improve well-known titanium implants, pores can be used for increasing bone formation and close b...
Abstract: To improve well-known titanium implants, pores can be used for increasing bone formation a...
Implant constructs supporting angiogenesis are favorable for treating critically-sized bone defects,...
Implant constructs supporting angiogenesis are favorable for treating critically-sized bone defects,...
For healing of critically sized bone defects, biocompatible and angiogenesis supporting implants are...
For healing of critically sized bone defects, biocompatible and angiogenesis supporting implants are...
Titanium is widely used as a bone implant material due to its biocompatibility and high resilience. ...
Titanium is widely used as a bone implant material due to its biocompatibility and high resilience. ...
Although titanium alloys remain the preferred biomaterials for the manufacture of biomedical implant...
Surface modification of titanium implants is used to enhance osseointegration. The study objective w...
Although titanium alloys remain the preferred biomaterials for the manufacture of biomedical implant...
OBJECTIVES: Laser engineering may create hemispherical porosities on titanium surfaces obtaining reg...
Surface modification of titanium implants is used to enhance osseointegration. The study objective w...
Degradable implant material for bone remodeling that corresponds to the physiological stability of b...
A promising bone graft substitute is porous titanium. Porous titanium, produced by selective laser m...
To improve well-known titanium implants, pores can be used for increasing bone formation and close b...
Abstract: To improve well-known titanium implants, pores can be used for increasing bone formation a...
Implant constructs supporting angiogenesis are favorable for treating critically-sized bone defects,...
Implant constructs supporting angiogenesis are favorable for treating critically-sized bone defects,...
For healing of critically sized bone defects, biocompatible and angiogenesis supporting implants are...
For healing of critically sized bone defects, biocompatible and angiogenesis supporting implants are...
Titanium is widely used as a bone implant material due to its biocompatibility and high resilience. ...
Titanium is widely used as a bone implant material due to its biocompatibility and high resilience. ...
Although titanium alloys remain the preferred biomaterials for the manufacture of biomedical implant...
Surface modification of titanium implants is used to enhance osseointegration. The study objective w...
Although titanium alloys remain the preferred biomaterials for the manufacture of biomedical implant...
OBJECTIVES: Laser engineering may create hemispherical porosities on titanium surfaces obtaining reg...
Surface modification of titanium implants is used to enhance osseointegration. The study objective w...
Degradable implant material for bone remodeling that corresponds to the physiological stability of b...
A promising bone graft substitute is porous titanium. Porous titanium, produced by selective laser m...