A bonelike apatite layer was formed on metallic substrate ( Commercial grade Titanium) when Calcium silicate was used as a catalyst for the apatite nucleation, and simulated body fluid was used as a medium for the apatite growth. The apatite-forming ability detected by EDX, the molal' ratio of CajP=1.70, indicating that calcium silicate coatings have the ability to induce the bone-like apatite nucleation and growth on their surfaces from SBF. It is assumed that particular silicate oligomers with structures such as dimer, linear trimer and cyclic tetrarner contribute to the apatite nucleation the most. The apatite layer was formed not only OIl limited surfaces but also on the whole surfaces of Titanium Substrate .. This biomi...
Titanium and its alloys have been used in dentistry due to their excellent corrosion resistance and ...
Titanium (Ti) plates were firstly treated to form various types of oxide layers on the surface and t...
The biomimetic approach for coating metal implants allows the deposition of new calcium phosphate (C...
Despite the well known biocompatibility and bioactivity of synthetic hydroxyapatite (HA), its use, a...
The clinical success of a bone-anchored implant is controlled by many factors such as implant shape,...
Titanium and titanium alloys have been extensively studied for many applications in the area of bone...
Titanium and titanium alloys have been extensively studied for many applications in the area of bone...
Over the last decade, researchers have been concerned with improving metallic biomaterials with prop...
A novel chemo-biomimetic method was developed to deposit hydroxyapatite (HA), simulating the porous ...
The combination of the high mechanical strength of metals with the osteoconductive properties of cal...
Titanium and its alloys have been used in dentistry due to their excellent corrosion resistance and ...
Titanium and its alloys have been used in dentistry due to their excellent corrosion resistance and ...
This article reports a biomimetic approach for coating hydroxyapatite on titanium alloy at ambient t...
Titanium and its alloys are commonly used in the biomedical industry for their superior strength, co...
Titanium (Ti) plates were firstly treated to form various types of oxide layers on the surface and t...
Titanium and its alloys have been used in dentistry due to their excellent corrosion resistance and ...
Titanium (Ti) plates were firstly treated to form various types of oxide layers on the surface and t...
The biomimetic approach for coating metal implants allows the deposition of new calcium phosphate (C...
Despite the well known biocompatibility and bioactivity of synthetic hydroxyapatite (HA), its use, a...
The clinical success of a bone-anchored implant is controlled by many factors such as implant shape,...
Titanium and titanium alloys have been extensively studied for many applications in the area of bone...
Titanium and titanium alloys have been extensively studied for many applications in the area of bone...
Over the last decade, researchers have been concerned with improving metallic biomaterials with prop...
A novel chemo-biomimetic method was developed to deposit hydroxyapatite (HA), simulating the porous ...
The combination of the high mechanical strength of metals with the osteoconductive properties of cal...
Titanium and its alloys have been used in dentistry due to their excellent corrosion resistance and ...
Titanium and its alloys have been used in dentistry due to their excellent corrosion resistance and ...
This article reports a biomimetic approach for coating hydroxyapatite on titanium alloy at ambient t...
Titanium and its alloys are commonly used in the biomedical industry for their superior strength, co...
Titanium (Ti) plates were firstly treated to form various types of oxide layers on the surface and t...
Titanium and its alloys have been used in dentistry due to their excellent corrosion resistance and ...
Titanium (Ti) plates were firstly treated to form various types of oxide layers on the surface and t...
The biomimetic approach for coating metal implants allows the deposition of new calcium phosphate (C...