Intervertebral implants should be designed with low load requirements, high friction coefficient and low elastic modulus in order to avoid the stress shielding effect on bone. Furthermore, the presence of a highly interconnected porous structure allows stimulating bone in-growth and enhancing implant-bone fixation. The aim of this study was to obtain bioactive porous titanium implants with highly interconnected pores with a total porosity of approximately 57¿%. Porous Titanium implants were produced by powder sintering route using the space holder technique with a binder phase and were then evaluated in an in vivo study. The size of the interconnection diameter between the macropores was about 210¿µm in order to guarantee bone in-growth thr...
We describe a new fabrication strategy for production of porous titanium scaffolds for skeletal impl...
Highly porous titanium and titanium alloys with an open cell structure are promising implant materia...
Among various metallic biomaterials, titanium and its alloys are the most interesting for orthopaedi...
Titanium implant failures are mainly related to stress shielding phenomenon and the poor cell intera...
Recently, an increasing amount of research has focused on the biological and mechanical behavior of ...
In this study, highly-interconnected porous titanium implants were produced by powder sintering with...
In this study, highly-interconnected porous titanium implants were produced by powder sintering with...
In this study, highly-interconnected porous titanium implants were produced by powder sintering with...
In this study, highly-interconnected porous titanium implants were produced by powder sintering with...
In this study, highly-interconnected porous titanium implants were produced by powder sintering with...
Titanium and its alloys are reference materials in biomedical applications because of their desirabl...
Commercial pure titanium is known as good substitute for cortical bone tissue. Nevertheless, stress ...
Commercial pure titanium is known as good substitute for cortical bone tissue. Nevertheless, stress ...
Commercial pure titanium is known as good substitute for cortical bone tissue. Nevertheless, stress ...
Titanium implant failures are mainly related to stress shielding phenomenon and the poor cell intera...
We describe a new fabrication strategy for production of porous titanium scaffolds for skeletal impl...
Highly porous titanium and titanium alloys with an open cell structure are promising implant materia...
Among various metallic biomaterials, titanium and its alloys are the most interesting for orthopaedi...
Titanium implant failures are mainly related to stress shielding phenomenon and the poor cell intera...
Recently, an increasing amount of research has focused on the biological and mechanical behavior of ...
In this study, highly-interconnected porous titanium implants were produced by powder sintering with...
In this study, highly-interconnected porous titanium implants were produced by powder sintering with...
In this study, highly-interconnected porous titanium implants were produced by powder sintering with...
In this study, highly-interconnected porous titanium implants were produced by powder sintering with...
In this study, highly-interconnected porous titanium implants were produced by powder sintering with...
Titanium and its alloys are reference materials in biomedical applications because of their desirabl...
Commercial pure titanium is known as good substitute for cortical bone tissue. Nevertheless, stress ...
Commercial pure titanium is known as good substitute for cortical bone tissue. Nevertheless, stress ...
Commercial pure titanium is known as good substitute for cortical bone tissue. Nevertheless, stress ...
Titanium implant failures are mainly related to stress shielding phenomenon and the poor cell intera...
We describe a new fabrication strategy for production of porous titanium scaffolds for skeletal impl...
Highly porous titanium and titanium alloys with an open cell structure are promising implant materia...
Among various metallic biomaterials, titanium and its alloys are the most interesting for orthopaedi...