Department of Materials and Interfaces, Weizmann Institute of Science, Rehovot 76100, Israel.
J Mech Behav Biomed Mater. 2012 May;9:198-206. doi: 10.1016/j.jmbbm.2012.01.014. Epub 2012 Jan 31.
Variations in Young's modulus of individual lamellae around a single bone osteon have been measured in three orthogonal planes by nanoindentation. The objective of these measurements was to establish a correlation between the mechanical properties and the microstructure of the osteonal lamellae. When indentation was performed in a plane perpendicular to the osteon axis (OA), the modulus of the lamella closest to the canal appears to be higher than the modulus of all other lamellae. No such difference was observed in planes parallel to the OA. However, in the parallel planes, an unexpected asymmetry in modulus was detected on opposing sides of the canal, potentially supporting the validity of the rotated plywood structure model of bone lamellae. Finally, based on the experimentally measured Young's modulus values, most osteonal lamellae appear to exhibit structural anisotropy.
通过纳米压痕技术,在三个正交平面上测量了单个骨 Osteon 周围单个薄板的杨氏模量变化。这些测量的目的是建立骨板层的机械性能与微观结构之间的相关性。当在垂直于 Osteon 轴 (OA) 的平面上进行压痕时,最接近管腔的板层的模量似乎高于所有其他板层的模量。在平行于 OA 的平面上没有观察到这种差异。然而,在平行平面上,在管腔的相对侧检测到了出人意料的模量不对称性,这可能支持骨板层的旋转胶合板结构模型的有效性。最后,根据实验测量的杨氏模量值,大多数骨板层似乎表现出结构各向异性。