The macrophysical properties of granular biomaterials used to fill bone defects have rarely been considered. Granules of a given biomaterial occupy three-dimensional (3-D) space when packed together and create a macroporosity suitable for the invasion of vascular and bone cells. Granules of β-tricalcium phosphate were prepared using polyurethane foam technology and increasing the amount of material powder in the slurry (10, 11, 15, 18, 21 and 25g). After sintering, granules of 1000-2000μm were prepared by sieving. They were analyzed morphologically by scanning electron microscopy and placed in polyethylene test tubes to produce 3-D scaffolds. Microcomputed tomography (microCT) was used to image the scaffolds and to determine porosity and fr...
The repair or replacement of damaged or diseased hard tissue is a biomedical field that has been the...
The three-dimensional (3D) structure and architecture of biomaterial scaffolds play a critical role ...
This thesis is presented in two parts; the first part is a study of the structure and properties of ...
Among biomaterials used for filling bone defects, beta-tricalcium phosphate (β-TCP) is suitable in n...
The 3D arrangement of porous granular biomaterials usable to fill bone defects has received little s...
Among biomaterials used for filling bone defects, beta-tricalcium phosphate (β-TCP) is suitable in n...
Porous structures are becoming more and more important in biology and material science because they ...
Biomaterials are used in the granular form to fill small bone defects. Granules can be prepared with...
International audiencePorous structures are becoming more and more important in biology and material...
Commercial ß-tricalcium phosphate (ß-TCP) is commercialy available in granules manufactured by sinte...
Porosity is an important factor to consider in a large variety of materials. Porosity can be visuali...
We have developed spherical β-tricalcium phosphate (β-TCP) granules with outer pores and internal mi...
Three-dimensional (3D) scaffolds with tailored pores ranging from the nanometer to millimeter scale ...
The architecture of bone filling biomaterials has a real impact on cellular activity, vascularizatio...
In tissue engineering, porous scaffolds are often used as three-dimensional (3D) supports for tissue...
The repair or replacement of damaged or diseased hard tissue is a biomedical field that has been the...
The three-dimensional (3D) structure and architecture of biomaterial scaffolds play a critical role ...
This thesis is presented in two parts; the first part is a study of the structure and properties of ...
Among biomaterials used for filling bone defects, beta-tricalcium phosphate (β-TCP) is suitable in n...
The 3D arrangement of porous granular biomaterials usable to fill bone defects has received little s...
Among biomaterials used for filling bone defects, beta-tricalcium phosphate (β-TCP) is suitable in n...
Porous structures are becoming more and more important in biology and material science because they ...
Biomaterials are used in the granular form to fill small bone defects. Granules can be prepared with...
International audiencePorous structures are becoming more and more important in biology and material...
Commercial ß-tricalcium phosphate (ß-TCP) is commercialy available in granules manufactured by sinte...
Porosity is an important factor to consider in a large variety of materials. Porosity can be visuali...
We have developed spherical β-tricalcium phosphate (β-TCP) granules with outer pores and internal mi...
Three-dimensional (3D) scaffolds with tailored pores ranging from the nanometer to millimeter scale ...
The architecture of bone filling biomaterials has a real impact on cellular activity, vascularizatio...
In tissue engineering, porous scaffolds are often used as three-dimensional (3D) supports for tissue...
The repair or replacement of damaged or diseased hard tissue is a biomedical field that has been the...
The three-dimensional (3D) structure and architecture of biomaterial scaffolds play a critical role ...
This thesis is presented in two parts; the first part is a study of the structure and properties of ...