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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Effects of structural anisotropy of cancellous bone on speed of ultrasonic fast waves in the bovine femur
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Effects of structural anisotropy of cancellous bone on speed of ultrasonic fast waves in the bovine femur

机译:松质骨结构各向异性对牛股骨超声快波速度的影响

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摘要

Ultrasonic waves in cancellous bone change dramatically depending on its structural complexity. One good example is the separation of an ultrasonic longitudinal wave into fast and slow waves during propagation. In this study, we examined fast wave propagation in cancellous bone obtained from the head of the bovine femur, taking the bone structure into consideration. We investigated the wave propagation perpendicular to the bone axis and found the two-wave phenomenon. By rotating the cylindrical cancellous bone specimen, changes in the fast wave speed due to the rotation angle then were observed. In addition to the ultrasonic evaluation, the structural anisotropy of each specimen was measured by X-ray micro-computed tomography (CT). From the CT images, we obtained the mean intercept length (MIL), degree of anisotropy (DA), and angle of insonification relative to the trabecular orientation. The ultrasonic and CT results showed that the fast wave speed was dependent on the structural anisotropy, especially on the trabecular orientation and length. The fast wave speeds always were higher for propagation parallel to the trabecular orientation. In addition, there was a strong correlation between the DA and the ratio between maximum and minimum speeds (Vmax/Vmin) (R2 = 0.63).
机译:松质骨中的超声波根据其结构复杂性而发生巨大变化。一个很好的例子是在传播过程中将超声波纵波分为快波和慢波。在这项研究中,我们考虑了骨骼结构,研究了从牛股骨头获得的松质骨中的快速波传播。我们研究了垂直于骨轴的波传播,并发现了两波现象。通过旋转圆柱形松质骨标本,然后观察到由于旋转角度引起的快波速度的变化。除超声评估外,还通过X射线计算机断层扫描(CT)测量了每个样品的结构各向异性。从CT图像中,我们获得了平均截距长度(MIL),各向异性程度(DA)和相对于小梁方向的声像角度。超声和CT结果表明,快波速度取决于结构各向异性,特别是取决于小梁的取向和长度。对于平行于小梁方向的传播,快速波速始终较高。此外,DA与最大速度和最小速度之比(Vmax / Vmin)之间存在很强的相关性(R2 = 0.63)。

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