Titanium foams produced via the space-holder method are used for spinal fusion devices since their combination of an open-cell structure and bone-like mechanical properties promises potentially excellent bone ingrowth. Earlier studies have indicated that the size of the pores and interconnects must be greater than 100 pm for effective bone ingrowth and vascularization. Hence, the quantification of the pore and interconnect size is required for efficient scaffold design. In this study, microcomputed tomography (mu CT) was used to obtain the three-dimensional (3D) structure of Ti foams with three levels of porosity (51%, 65% and 78%). Novel algorithms were then applied to quantify both the pore and interconnect size of Ti foams as a function ...
The generation of titanium foams is a promising strategy for modifying the mechanical properties of ...
International audienceTitanium and its alloy foams have been receiving a growing interest for biomed...
Studies on porous titanium for use in dental applications have been growing due to their excellent p...
Titanium foams produced via the space-holder method are used for spinal fusion devices since their c...
Under load-bearing conditions metal-based foam scaffolds are currently the preferred choice as bone/...
Porous titanium (Ti) offers several key attributes as a biomedical material. Among the known charact...
Under load-bearing conditions metal-based foam scaffolds are currently the preferred choice as bone/...
Porous titanium (Ti) offers several key attributes as a biomedical material. Among the known charact...
Titanium alloys find extensive use in the biomedical field, including applications in the form of a...
The generation of titanium foams is a promising strategy for modifying the mechanical properties of ...
Scaffold permeability is a key parameter combining geometrical features such as pore shape, size and...
The generation of titanium foams is a promising strategy for modifying the mechanical properties of ...
Pure titanium and some of its alloys are currently considered as the most attractive metallic materi...
To facilitate the design and development of porous metals, simulation of their mechanical behavior i...
3D fiber deposition is a technique that allows the development of metallic scaffolds with accurately...
The generation of titanium foams is a promising strategy for modifying the mechanical properties of ...
International audienceTitanium and its alloy foams have been receiving a growing interest for biomed...
Studies on porous titanium for use in dental applications have been growing due to their excellent p...
Titanium foams produced via the space-holder method are used for spinal fusion devices since their c...
Under load-bearing conditions metal-based foam scaffolds are currently the preferred choice as bone/...
Porous titanium (Ti) offers several key attributes as a biomedical material. Among the known charact...
Under load-bearing conditions metal-based foam scaffolds are currently the preferred choice as bone/...
Porous titanium (Ti) offers several key attributes as a biomedical material. Among the known charact...
Titanium alloys find extensive use in the biomedical field, including applications in the form of a...
The generation of titanium foams is a promising strategy for modifying the mechanical properties of ...
Scaffold permeability is a key parameter combining geometrical features such as pore shape, size and...
The generation of titanium foams is a promising strategy for modifying the mechanical properties of ...
Pure titanium and some of its alloys are currently considered as the most attractive metallic materi...
To facilitate the design and development of porous metals, simulation of their mechanical behavior i...
3D fiber deposition is a technique that allows the development of metallic scaffolds with accurately...
The generation of titanium foams is a promising strategy for modifying the mechanical properties of ...
International audienceTitanium and its alloy foams have been receiving a growing interest for biomed...
Studies on porous titanium for use in dental applications have been growing due to their excellent p...