首页> 外文会议>2015 6th European Symposium on Ultrasonic Characterization of Bone >Impact of chemical composition on microscale elastic properties of cortical bone - A site-matched FTIR-SAM study
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Impact of chemical composition on microscale elastic properties of cortical bone - A site-matched FTIR-SAM study

机译:化学成分对皮质骨微尺度弹性的影响-现场匹配的FTIR-SAM研究

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Cortical bone strength is determined by multiple factors. Among them, changes in cortical porosity and elastic properties of the extracellular bone matrix have been suggested to be related to fracture risk. The objective of this ex-vivo study was to assess matrix stiffness and chemical composition by means of site-matched 200-MHz acoustic microscopy and synchrotron radiation based FTIR microscopy in cortical bone samples obtained from the tibia mid-shaft of a representative sample cohort (19 human donors, age range: 69-94 yrs). The microscale stiffness coefficient c was compared to characteristic features of the organic and inorganic constituents derived from the FTIR spectrum in site-matched osteonal and interstitial tissue regions. Matrix stiffness c ranged from 22.4 GPa to 46.9 GPa (CV: 19%). A subset from 3 donors has been compared with FTIR parameters so far. In these samples, a consistent negative correlations of c were observed with mineral-to-matrix ratio (R=-0.44, p<;0.005), collagen cross-linking (R=-0.5, p<;0.005) and carbonate-to-phosphate ratio (R=-0.33, p<;0.005). These findings underline the diagnostic value of elastic properties for the assessment of alterations in the organic tissue matrix. The former could be assessed by in-vivo US technologies, e.g. axial transmission measurements.
机译:皮质骨强度由多种因素决定。其中,已提出皮质孔隙率和细胞外骨基质弹性特性的变化与骨折风险有关。这项离体研究的目的是通过定点匹配的200 MHz声波显微镜和基于同步辐射的FTIR显微镜评估从代表性样本队列的胫骨中轴获得的皮质骨样本中的基质刚度和化学成分( 19位人类捐赠者,年龄范围:69-94岁。将微观尺度的刚度系数c与在部位匹配的骨组织和间质组织区域中的FTIR光谱得出的有机和无机成分的特征进行了比较。基质刚度c为22.4 GPa至46.9 GPa(CV:19%)。到目前为止,已经将3个捐赠者的一部分与FTIR参数进行了比较。在这些样品中,观察到c与矿物质与基质的比率(R = -0.44,p <; 0.005),胶原交联(R = -0.5,p <; 0.005)和碳酸盐与-磷酸盐比率(R = -0.33,p <; 0.005)。这些发现强调了弹性特性对评估有机组织基质改变的诊断价值。前者可以通过体内美国技术进行评估,例如轴向传动测量。

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