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Material anisotropy and elasticity of cortical and trabecular bone in the adult mouse femur via AFM indentation

机译:通过AFM压痕的成人小鼠股骨中皮质和小梁骨的材料各向异性和弹性

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This paper investigates the elastic properties of bone tissue in the adult mouse femur through Atomic Force Microscopy (AFM) indentation with the goal of understanding its microstructure and underlying mechanics at the nano length scale. Both trabecular and cortical bone types are studied. In particular, we examined the elasticity of cortical bone and individual trabeculae in the longitudinal and transverse directions of the samples. For cortical bone, the elastic modulus in the longitudinal direction was found to be 10-15% higher than that in the transverse direction; for trabecular bone, this difference was 42%. For the trabeculae, this value was found to be in a lower range (0.92 +/- 0.22 GPa). As per the transverse elastic modulus, an average of 1.58 +/- 0.36 GPa was measured for cortical bone, and 0.55 +/- 0.21 GPa for trabecular bone. The anisotropy ratio was within the range of 1.2-1.5 for cortical bone and 1.7-2 for trabecular bone. While the elastic modulus of cortical bone varied along the length of the femur with up to 30% variation, no significant differences were observed within each transverse section. The effect of indentation frequency (1-500 Hz) on the longitudinal elastic moduli was also investigated for cortical and trabecular bone, with results showing a correlation between indentation frequency and elastic modulus.
机译:本文通过原子力显微镜(AFM)压痕来研究成人小鼠股骨中的骨组织的弹性性质,其目的是在纳米长度尺度上了解其微观结构和基础力学。研究了小梁和皮质骨类型。特别是,我们检查了样品的纵向和横向方向上的皮质骨和单个小梁的弹性。对于皮质骨,发现纵向方向上的弹性模量高于横向的10-15%;对于小梁骨,这种差异为42%。对于小梁,发现该值在较低范围内(0.92 +/- 0.22GPa)。根据横向弹性模量,测量皮质骨的平均1.58 +/- 0.36GPa,以及用于小梁骨的0.55 +/- 0.21GPa。各向异性率在皮质骨的1.2-1.5的范围内,1.7-2用于小梁骨。虽然皮质骨的弹性模量沿着股骨的长度而变化,但在每个横截面内没有观察到显着差异。调节频率(1-500Hz)对皮质和小梁骨的效果还研究了皮质和小梁骨,结果表明压痕频率和弹性模量之间的相关性。

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