Hengsberger S, Enstroem J, Peyrin F, Zysset Ph
Laboratory of Bone Biomechanics, Ecole Polytechnique Fédérale de Lausanne, Lausanne EPFL 1015, Switzerland.
J Biomech. 2003 Oct;36(10):1503-9. doi: 10.1016/s0021-9290(03)00131-3.
This work consists of the validation of a novel approach to estimate the local anisotropic elastic constants of the bone extracellular matrix using nanoindentation. For this purpose, nanoindentation on two planes of material symmetry were analyzed and the resulting longitudinal elastic moduli compared to the moduli measured with a macroscopic tensile test. A combined lathe and tensile system was designed that allows machining and testing of cylindrical microspecimens of approximately 4mm in length and 300 microm in diameter. Three bovine specimens were tested in tension and their outer geometry and porosity assessed by synchrotron radiation microtomography. Based on the results of the traction test and the precise outer geometry, an apparent longitudinal Young's modulus was calculated. Results between 20.3 and 27.6 GPa were found that match with previously reported values for bovine compact bone. The same specimens were then characterized by nanoindentation on a transverse and longitudinal plane. A longitudinal Young's modulus for the bone matrix was then derived using the numerical scheme proposed by Swadener and Pharr and the fabric-elasticity relationship by Zysset and Curnier. Based on the matrix modulus and a power law effective volume fraction, an apparent longitudinal Young's modulus was predicted for each microspecimen. This alternative approach provided values between 19.9 and 30.0 GPa, demonstrating differences between 2% and 13% to the values provided by the initial tensile test. This study therefore raises confidence in our nanoindentation protocol of the bone extracellular matrix and supports the underlying hypotheses used to extract the anisotropic elastic constants.
这项工作包括对一种使用纳米压痕来估计骨细胞外基质局部各向异性弹性常数的新方法进行验证。为此,分析了在材料对称的两个平面上进行的纳米压痕,并将所得纵向弹性模量与通过宏观拉伸试验测得的模量进行比较。设计了一种组合式车床和拉伸系统,该系统允许对长度约为4毫米、直径为300微米的圆柱形微试样进行加工和测试。对三个牛标本进行了拉伸测试,并通过同步辐射显微断层扫描评估了它们的外部几何形状和孔隙率。根据拉伸试验结果和精确的外部几何形状,计算出表观纵向杨氏模量。结果发现其在20.3至27.6吉帕之间,与先前报道的牛密质骨值相符。然后对相同的标本在横向和纵向平面上进行纳米压痕表征。然后使用Swadener和Pharr提出的数值方案以及Zysset和Curnier的织物弹性关系推导出骨基质的纵向杨氏模量。基于基质模量和幂律有效体积分数,预测了每个微试样的表观纵向杨氏模量。这种替代方法提供的值在19.9至30.0吉帕之间,与初始拉伸试验提供的值相比,差异在2%至13%之间。因此,本研究增强了我们对骨细胞外基质纳米压痕方案的信心,并支持了用于提取各向异性弹性常数的基本假设。