Biomedical Engineering Reference
In-Depth Information
154. Choi, K., et al.: The elastic moduli of human subchondral, trabecular, and cortical bone tissue
and the size-dependency of cortical bone modulus. J. Biomech. 23(11), 1103-1113 (1990)
155. Choi, K., Goldstein, S.A.: A comparison of the fatigue behavior of human trabecular and
cortical bone tissue. J. Biomech. 25(12), 1371-1381 (1992)
156. Jepsen, K.J., et al.: Type I collagen mutation alters the strength and fatigue behavior
of Mov13 cortical tissue. J. Biomech. 30(11-12), 1141-1147 (1997)
157. Wang, X., et al.: The role of collagen in determining bone mechanical properties. J. Orthop.
Res. 19(6), 1021-1026 (2001)
158. Brockstedt, H., et al.: Age-related and sex-related changes in iliac cortical bone mass and
remodeling. Bone 14(4), 681-691 (1993)
159 Stein, M.S., et al.: An automated analysis of intracortical porosity in human femoral bone
across age. J Bone Miner Res. 14(4), 624-632 (1999)
160. Thomas, C.D.L., Feik, S.A., Clement, J.G.: Increase in pore area, and not pore density, is the
main determinant in the development of porosity in human cortical bone. J. Anat. 209(2),
219-230 (2006)
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