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By Roger Narayan; Paolo Colombo; Michael Halbig; Sanjay Mathur; American Ceramic Society

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Additional info for Advances in bioceramics and porous ceramics V : a collection of papers presented at the 36th International Conference on Advanced Ceramics and Composites, January 22-27, 2012, Daytona Beach, Florida

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6 After immersion in SBF for 30 days, the mean compressive strength of the silicate 13-93 scaffolds decreased by -40% to 87 ± 28 MPa. In comparison, the mean compressive strength of the borate 13-93B3 scaffolds decreased by - 8 5 % to 9 ± 4 MPa. Advances in Bioceramics and Porous Ceramics V • 17 In Vitro Evaluation of Silicate and Borate Bioactive Glass Scaffolds 180 r 160 [ CD Q. ^ sz O) c O • 140 \ 13-93 13-93 B3 [ 120 F 100 I h ö 80 [ 2> 60 I 0) 40 [■ 20 [■ 1 0 10 20 Time (days) Figure 5. Compressive strength of silicate 13-93 and borate 13-93B3 scaffolds as a function of immersion time in SBF.

C. M. Torres-Martinez, T. Lopez and P. Quintana, "A study of the crystallization of Z1O2 in the sol-gel system: ZrCVSiCh" J. , 158(2)349-57(2001). R. McPherson, "Formation of tetragonal Zr02-glass structures in rapidly quenched AI2O3Si0 2 -Zr0 2 " J. Mater. Sei. , 6(7) 795-6 (1987). M. J. M. Fernandez Navarro, "ZrC^-SiCh materials prepared by sol-gel" J. Non-Cryst. Solids, 100(1-3) 330-8 (1988). W. X. K. Guo, "Mechanical properties and microstructure of Z1O2Si0 2 composite" J. Mater. , 32(1) 197-201.

6 After immersion in SBF for 30 days, the mean compressive strength of the silicate 13-93 scaffolds decreased by -40% to 87 ± 28 MPa. In comparison, the mean compressive strength of the borate 13-93B3 scaffolds decreased by - 8 5 % to 9 ± 4 MPa. Advances in Bioceramics and Porous Ceramics V • 17 In Vitro Evaluation of Silicate and Borate Bioactive Glass Scaffolds 180 r 160 [ CD Q. ^ sz O) c O • 140 \ 13-93 13-93 B3 [ 120 F 100 I h ö 80 [ 2> 60 I 0) 40 [■ 20 [■ 1 0 10 20 Time (days) Figure 5. Compressive strength of silicate 13-93 and borate 13-93B3 scaffolds as a function of immersion time in SBF.

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