Biocompatible ceramics have recently attracted increasing attention as porous scaffolds that stimulate and guide natural bone regeneration. Due to excellent biocompatibility of titania (titanium dioxide or TiO2) porous three-dimensional (3D) TiO2 structures have been proposed as promising scaffolding materials for inducing bone formation from the surrounding environment and for enhancement of vascularisation after implantation. In this paper, 3D porous TiO2 ceramic scaffolds were produced via polymer foam replica method. This work deals with several important issues that are considered to be important for 3D scaffolds applied to regenerate bone tissue: pore size, porosity and mechanical strength. TiO2 ceramic scaffolds with pore size 300 μm...
Titanium dioxide (TiO2) is a biocompatible material with good osteoconductive properties. It has bee...
The skeletal system is vulnerable to injuries and bone loss over the years, making the use of autolo...
Bioceramics are clinically used as implantable materials to alleviate pain and restore function to d...
Biocompatible ceramics have recently attracted increasing attention as porous scaffolds that stimula...
Scaffolds used for bone tissue regeneration should provide void volume for new tissue formation and ...
The development of scaffolds for replacement of injured and diseased hard tissues such as bones is h...
The main reasons for using bone scaffolds are to provide an environment for bone formation, maintain...
Porous TiO2 ceramic has attracted considerable research interest as a scaffold material for bone tis...
Use of scaffolds as sacrificial templates for bone ingrowth is the basis of bone tissue regeneration...
The need for a better scaffold to treat large bone-defects resulting from skeletal conditions still ...
The need for a better scaffold to treat large bone-defects resulting from skeletal conditions still ...
The need for a better scaffold to treat large bone-defects resulting from skeletal conditions still ...
The work is focused on the preparation of novel tissue engineering scaffolds with suitable initial m...
Bone regeneration and bone ingrowth has been a forefront issue in tissue engineering. Many studies a...
none6noRegeneration of load-bearing bone segments is still an open challenge due to the lack of biom...
Titanium dioxide (TiO2) is a biocompatible material with good osteoconductive properties. It has bee...
The skeletal system is vulnerable to injuries and bone loss over the years, making the use of autolo...
Bioceramics are clinically used as implantable materials to alleviate pain and restore function to d...
Biocompatible ceramics have recently attracted increasing attention as porous scaffolds that stimula...
Scaffolds used for bone tissue regeneration should provide void volume for new tissue formation and ...
The development of scaffolds for replacement of injured and diseased hard tissues such as bones is h...
The main reasons for using bone scaffolds are to provide an environment for bone formation, maintain...
Porous TiO2 ceramic has attracted considerable research interest as a scaffold material for bone tis...
Use of scaffolds as sacrificial templates for bone ingrowth is the basis of bone tissue regeneration...
The need for a better scaffold to treat large bone-defects resulting from skeletal conditions still ...
The need for a better scaffold to treat large bone-defects resulting from skeletal conditions still ...
The need for a better scaffold to treat large bone-defects resulting from skeletal conditions still ...
The work is focused on the preparation of novel tissue engineering scaffolds with suitable initial m...
Bone regeneration and bone ingrowth has been a forefront issue in tissue engineering. Many studies a...
none6noRegeneration of load-bearing bone segments is still an open challenge due to the lack of biom...
Titanium dioxide (TiO2) is a biocompatible material with good osteoconductive properties. It has bee...
The skeletal system is vulnerable to injuries and bone loss over the years, making the use of autolo...
Bioceramics are clinically used as implantable materials to alleviate pain and restore function to d...