The desired mechanical properties of porous tissue engineering scaffolds may differ depending on the clinical applications. Therefore, it is crucial to be able to control these properties for specific cases. In the current study, cube shape, porous, silicate-based (13-93) bioactive glass scaffolds were fabricated by robotic deposition method. Scaffolds were prepared layer by layer to form constructs with a grid-like microstructure. After binder burnout, the constructs were sintered for 1 h at 700 degrees C to produce scaffolds consisting of dense bioactive glass struts (similar to 280 +/- 20 aem in diameter) at different pore widths (300 +/- 50, 600 +/- 25, and 900 +/- 50 aem). The mechanical response of the scaffolds in compression was mea...
The aim of Tissue Engineering is to develop biological substitutes that will restore lost morphologi...
In this study, the mechanical properties of porous glass–ceramic scaffolds are investigated by means...
In this study, the mechanical properties of porous glass–ceramic scaffolds are investigated by means...
The desired mechanical properties of porous tissue engineering scaffolds may differ depending on the...
There is a clinical need for synthetic bioactive materials that can reliably repair intercalary skel...
Bioactive glasses have attractive characteristics as a scaffold material for healing bone defects bu...
There is a need to develop synthetic scaffolds for repairing large defects in load-bearing bones. Ou...
There is a need to develop synthetic scaffolds to repair large defects in load-bearing bones. Bioact...
This chapter examines the re‐development of the microstructure of the uniform gridlike bioactive gla...
International audienceA computational model based on finite element method (FEM) and computational f...
Since the discovery of 45S5 Bioglass® by Larry Hench, bioactive glasses have been widely studied as ...
Porous structure of bone scaffold plays an important role in tissue engineering applications. The na...
The growing prevalence of osteoporosis and other bone related disorders emphasise on the importance ...
Tissue engineering scaffolds provide temporary mechanical support for tissue regeneration and trans...
Tissue engineering scaffolds provide temporary mechanical support for tissue regeneration and trans...
The aim of Tissue Engineering is to develop biological substitutes that will restore lost morphologi...
In this study, the mechanical properties of porous glass–ceramic scaffolds are investigated by means...
In this study, the mechanical properties of porous glass–ceramic scaffolds are investigated by means...
The desired mechanical properties of porous tissue engineering scaffolds may differ depending on the...
There is a clinical need for synthetic bioactive materials that can reliably repair intercalary skel...
Bioactive glasses have attractive characteristics as a scaffold material for healing bone defects bu...
There is a need to develop synthetic scaffolds for repairing large defects in load-bearing bones. Ou...
There is a need to develop synthetic scaffolds to repair large defects in load-bearing bones. Bioact...
This chapter examines the re‐development of the microstructure of the uniform gridlike bioactive gla...
International audienceA computational model based on finite element method (FEM) and computational f...
Since the discovery of 45S5 Bioglass® by Larry Hench, bioactive glasses have been widely studied as ...
Porous structure of bone scaffold plays an important role in tissue engineering applications. The na...
The growing prevalence of osteoporosis and other bone related disorders emphasise on the importance ...
Tissue engineering scaffolds provide temporary mechanical support for tissue regeneration and trans...
Tissue engineering scaffolds provide temporary mechanical support for tissue regeneration and trans...
The aim of Tissue Engineering is to develop biological substitutes that will restore lost morphologi...
In this study, the mechanical properties of porous glass–ceramic scaffolds are investigated by means...
In this study, the mechanical properties of porous glass–ceramic scaffolds are investigated by means...