首页> 外文会议>2010 IEEE International Ultrasonics Symposium >Ultrasonic assessment of the determinants of human cortical bone elasticity: Relative contributions of Haversian porosity and mineralized matrix stiffness
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Ultrasonic assessment of the determinants of human cortical bone elasticity: Relative contributions of Haversian porosity and mineralized matrix stiffness

机译:超声评估人类皮质骨弹性的决定因素:哈弗斯孔隙度和矿化基质刚度的相对贡献

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At the mesoscale (a few millimeters), cortical bone can be described as a two-phase material which consists in a relatively hard matrix and pores. The mesoscopic elastic properties are hence essentially determined by the stiffness of the matrix and the pores morphology. The goal of the study was to assess the relative contributions of tissue elasticity and porosity to mesoscopic elasticity. Measurements were conducted on human femoral cortical bone (21 specimens taken from 10 women donors aged from 66 to 98 years). A 50-MHz scanning acoustic microscope was used to assess the cortical porosity and evaluate the bone matrix elasticity. A contact ultrasonic method based on wave velocity and apparent tissue density measurements was applied to determine the bone mesoscale stiffness coefficients. The mesoscale stiffness was highly correlated to the cortical porosity whereas the mean tissue elasticity (reflected by acoustic impedance values) did not explain the mesoscopic stiffness variations. This work suggests that, for the elderly population, the elastic properties of the mineralized matrix do not undergo large variations among different samples and the cortical porosity accounts for most of the variations of mesoscale elasticity.
机译:在中尺度(几毫米)处,皮质骨可以描述为一种两相材料,由相对较硬的基质和孔组成。因此,介观弹性性质基本上由基质的刚度和孔的形态决定。该研究的目的是评估组织弹性和孔隙度对介观弹性的相对贡献。在人类股骨皮质骨上进行了测量(从10位年龄在66至98岁之间的女性捐献者身上采集了21个标本)。使用50 MHz扫描声学显微镜评估皮质孔隙率并评估骨基质弹性。应用基于波速和表观组织密度测量的接触超声方法来确定骨中尺度刚度系数。中尺度刚度与皮质孔隙率高度相关,而平均组织弹性(由声阻抗值反映)不能解释介观刚度变化。这项工作表明,对于老年人群而言,矿化基质的弹性特性在不同样品之间不会发生大的变化,并且皮质孔隙度是中尺度弹性的大部分变化。

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