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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Two-wave propagation imaging to evaluate the structure of cancellous bone
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Two-wave propagation imaging to evaluate the structure of cancellous bone

机译:两波传播成像评估松质骨的结构

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摘要

The two-wave phenomenon reflects not only bone mass but also the complex bone structure of cancellous bone. We propose a new simple imaging technique based on the twowave phenomenon for investigating the anisotropic structure of cancellous bone. A cylindrical specimen of cancellous bone was obtained from a bovine femur. The structure (alignment of trabeculae) of the specimen was obtained from 3-D X-ray micro computed tomography imaging. Using a conventional ultrasonic pulse technique, we rotated the receiver around the specimen to investigate the ultrasonic fields after propagation within the specimen. The ultrasonic propagation image clearly showed the effect of the bone structure. We found that the fast wave showed apparent refraction, whereas the slow wave did not. Fast-wave propagation imaging is thus a simple and convenient technique for easy interpretation of the anisotropic structure. This imaging technique has the potential to become a powerful tool to investigate the structure of trabeculae during in vivo measurements.
机译:两波现象不仅反映了骨质,还反映了松质骨的复杂骨结构。我们提出了一种基于双波现象的新的简单成像技术,以研究松质骨的各向异性结构。从牛股骨获得圆柱状松质骨标本。样品的结构(小梁的排列)是从3-D X射线计算机断层扫描成像获得的。使用常规的超声脉冲技术,我们围绕样品旋转接收器,以研究在样品内传播后的超声场。超声传播图像清楚地显示了骨结构的作用。我们发现快波显示出明显的折射,而慢波则没有。因此,快速波传播成像是一种易于理解各向异性结构的简便技术。这种成像技术有可能成为研究体内测量过程中小梁结构的有力工具。

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