Porous titanium (Ti) and titanium alloys are promising scaffold biomaterials for bone tissue engineering, because they have the potential to provide new bone tissue ingrowth abilities and low elastic modulus to match that ofnatural bone. In the present study, a new highly porous Ti6Ta4Sn alloy scaffold with the addition of biocompatible alloying elements (tantalum (Ta) and tin (Sn)) was prepared using a space-holder sintering method. Thestrength of the Ti6Ta4Sn scaffold with a porosity of 75% was found to be significantly higher than that of a pure Ti scaffold with the same porosity. The elastic modulus of the porous alloy can be customized to match that ofhuman bone by adjusting its porosity. In addition, the porous Ti6Ta4Sn alloy exhibite...
Human bone is constantly being remodeled, and has the ability to repair itself when damage occurs. H...
Synthetic scaffolds are a highly promising new approach to replace both autografts and allografts to...
Porous metal structures have emerged as a promising solution in repairing and replacing damaged bone...
Porous titanium (Ti) and titanium alloys are promising scaffold biomaterials for bone tissue enginee...
Porous titanium (Ti) and titanium alloys are promising scaffold biomaterials for bone tissue enginee...
Porous scaffolds manufactured via powder metallurgy and sintering were designed for their structure ...
Porous titanium (Ti) and Ti alloys are important scaffold materials for bone tissue engineering. In ...
Titanium and some of its alloys have received considerable attention for biomedical applications in ...
In this paper, porous Ti14Nb4Sn alloys were fabricated using a space holder sintering method, result...
In the present study, porous Ti–10Nb–10Zr alloy scaffolds with different porosities were...
Considering factors such as the ageing population, growing demand for mobility at later stages in li...
Titanium (Ti) based porous alloys have been widely used as orthopedic implants. However, the success...
<div><p>Background</p><p>The improvement of bone ingrowth into prosthesis and enhancement of the com...
The effect of pore size and porosity on elastic modulus, strength, cell attachment and cell prolifer...
Synthetic scaffolds are a highly promising new approach to replace both autografts and allografts to...
Human bone is constantly being remodeled, and has the ability to repair itself when damage occurs. H...
Synthetic scaffolds are a highly promising new approach to replace both autografts and allografts to...
Porous metal structures have emerged as a promising solution in repairing and replacing damaged bone...
Porous titanium (Ti) and titanium alloys are promising scaffold biomaterials for bone tissue enginee...
Porous titanium (Ti) and titanium alloys are promising scaffold biomaterials for bone tissue enginee...
Porous scaffolds manufactured via powder metallurgy and sintering were designed for their structure ...
Porous titanium (Ti) and Ti alloys are important scaffold materials for bone tissue engineering. In ...
Titanium and some of its alloys have received considerable attention for biomedical applications in ...
In this paper, porous Ti14Nb4Sn alloys were fabricated using a space holder sintering method, result...
In the present study, porous Ti–10Nb–10Zr alloy scaffolds with different porosities were...
Considering factors such as the ageing population, growing demand for mobility at later stages in li...
Titanium (Ti) based porous alloys have been widely used as orthopedic implants. However, the success...
<div><p>Background</p><p>The improvement of bone ingrowth into prosthesis and enhancement of the com...
The effect of pore size and porosity on elastic modulus, strength, cell attachment and cell prolifer...
Synthetic scaffolds are a highly promising new approach to replace both autografts and allografts to...
Human bone is constantly being remodeled, and has the ability to repair itself when damage occurs. H...
Synthetic scaffolds are a highly promising new approach to replace both autografts and allografts to...
Porous metal structures have emerged as a promising solution in repairing and replacing damaged bone...