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Relative contributions of porosity and mineralized matrix properties to the bulk axial ultrasonic wave velocity in human cortical bone

机译:孔隙度和矿化基质性质对人体皮质骨中整体轴向超声波速度的相对贡献

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摘要

Velocity of ultrasound waves has proved to be a useful indicator of bone biomechanical competence. A detailed understanding of the dependence of ultrasound parameters such as velocity on bone characteristics is a key to the development of bone quantitative ultrasound (QUS). The objective of this study is to investigate the relative contributions of porosity and mineralized matrix properties to the bulk compressional wave velocity (BCV) along the long bone axis. Cross-sectional slabs from the diaphysis of four human femurs were included in the study. Seven regions of interest (ROIs) were selected in each slab. BCV was measured in through-transmission at 5 MHz. Impedance of the mineralized matrix (Z _m) and porosity (Por) were obtained from 50 MHz scanning acoustic microscopy. Por and Z _m had comparable effects on BCV along the bone axis (R = -0.57 and R = 0.72, respectively).
机译:超声波的速度已被证明是骨生物力学能力的有用指标。对超声参数(如速度)对骨骼特征的依赖性的详细了解是发展骨骼定量超声(QUS)的关键。这项研究的目的是调查孔隙率和矿化基质性质对沿长骨轴的整体压缩波速度(BCV)的相对贡献。该研究包括来自四个人股骨的骨干的横断面平板。在每个平板中选择了七个感兴趣区域(ROI)。在5 MHz的直通传输中测量BCV。矿化基质的阻抗(Z _m)和孔隙率(Por)从50 MHz扫描声学显微镜获得。 Por和Z_m对沿骨轴的BCV具有可比的影响(分别为R = -0.57和R = 0.72)。

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