Porous titanium (Ti) and Ti-high density polyethylene (Ti-HDPE) composite were investigated as new hip implant materials to increase the biomechanical compatibility by promoting a matching modulus of elasticity between hip stem and human bone. Surfaces of both materials were modified to increase its bioactivity and biocompatibility through electrochemical activation treatment and deposition of hydroxyapatite (HA) coating. The electrochemical activation treatment of both materials in 10 M NaOH solution created a bone-like porous nanostructure across the surfaces, thus enhancing the growth of natural bone. A top layer with nanometer-pores and TiO2 was formed during the activation process, creating a favorable and prerequisite condition conduc...
Generally, the metallic implants do not exhibit any bio-integration properties in contact with bone ...
When creating titanium-containing bone implants, the bioactive coatings that promote their rapid eng...
The article discusses the possibility of obtaining a hardened composite material with a porous struc...
A novel chemo-biomimetic method was developed to deposit hydroxyapatite (HA), simulating the porous ...
A nano hydroxyapatite (HAp) layer was coated on a roughen titanium surface by means of electrophoret...
Biomaterials are in use for the replacement and reconstruction of several tissues and organs as trea...
The important issue associated with the design and the fabrication of the titanium and titanium allo...
Hydroxyapatite coatings are of great importance in the biological and biomedical coatings fields, es...
Surface modification of titanium-based implants is considered a highly effective solution to enhance...
Titanium and its alloys are commonly preferred implant materials for hard tissue applications. Today...
A nano-TiO2/hydroxyapatite composite bioceramic coating was developed and applied to the surfaces of...
Hydroxyapatite [Ca1o(PO)s(OH)z] is an integral part of the body found predominantly in bones and tee...
This communication presents a novel technology to enhance the biocompatibility of bioinert Ti6Al4V a...
Ultra high molecular weight polyethylene (UHMWPE), a common material for artificial joint linings, l...
Hydroxyapatite (HAp) is the most suitable biocompatible material for bone implant coatings. However,...
Generally, the metallic implants do not exhibit any bio-integration properties in contact with bone ...
When creating titanium-containing bone implants, the bioactive coatings that promote their rapid eng...
The article discusses the possibility of obtaining a hardened composite material with a porous struc...
A novel chemo-biomimetic method was developed to deposit hydroxyapatite (HA), simulating the porous ...
A nano hydroxyapatite (HAp) layer was coated on a roughen titanium surface by means of electrophoret...
Biomaterials are in use for the replacement and reconstruction of several tissues and organs as trea...
The important issue associated with the design and the fabrication of the titanium and titanium allo...
Hydroxyapatite coatings are of great importance in the biological and biomedical coatings fields, es...
Surface modification of titanium-based implants is considered a highly effective solution to enhance...
Titanium and its alloys are commonly preferred implant materials for hard tissue applications. Today...
A nano-TiO2/hydroxyapatite composite bioceramic coating was developed and applied to the surfaces of...
Hydroxyapatite [Ca1o(PO)s(OH)z] is an integral part of the body found predominantly in bones and tee...
This communication presents a novel technology to enhance the biocompatibility of bioinert Ti6Al4V a...
Ultra high molecular weight polyethylene (UHMWPE), a common material for artificial joint linings, l...
Hydroxyapatite (HAp) is the most suitable biocompatible material for bone implant coatings. However,...
Generally, the metallic implants do not exhibit any bio-integration properties in contact with bone ...
When creating titanium-containing bone implants, the bioactive coatings that promote their rapid eng...
The article discusses the possibility of obtaining a hardened composite material with a porous struc...