Van Rietbergen B, Odgaard A, Kabel J, Huiskes R
Biomechanics Section, University of Nijmegen, The Netherlands.
J Biomech. 1996 Dec;29(12):1653-7. doi: 10.1016/0021-9290(96)00093-0.
A method is presented to find orthotropic elastic symmetries and constants directly from the elastic coefficients in the overall stiffness matrix of trabecular bone test specimens. Contrary to earlier developed techniques, this method does not require pure orthotropic behavior or additional fabric measurements. The method uses high-resolution computer reconstructions of trabecular bone specimens as input for large-scale FE-analyses to determine all the 21 elastic coefficients in the overall stiffness matrix of the specimen, using a direct mechanics approach. An optimization procedure is then used to find the coordinate transformation that yields the best orthotropic representation of this matrix. The method is illustrated here relative to two trabecular bone specimens. The techniques developed here can be used to obtain a complete characterization of the mechanical properties of trabecular architecture. With the development of in vivo reconstruction techniques, even in vivo measurements will be possible.
本文提出了一种直接从松质骨测试样本整体刚度矩阵中的弹性系数来寻找正交各向异性弹性对称性和常数的方法。与早期开发的技术不同,该方法不需要纯正交各向异性行为或额外的结构测量。该方法使用松质骨样本的高分辨率计算机重建作为大规模有限元分析的输入,采用直接力学方法确定样本整体刚度矩阵中的所有21个弹性系数。然后使用优化程序来找到能给出该矩阵最佳正交各向异性表示的坐标变换。本文针对两个松质骨样本对该方法进行了说明。这里开发的技术可用于全面表征松质骨结构的力学性能。随着体内重建技术的发展,甚至体内测量也将成为可能。