In vitro measurements of the lateral wave in human cortical bone

E. Camus, M. Talmant, G. Berger, P. Laugier
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Abstract

Ultrasonic wave propagation in human cortical bone has been investigated in vitro using an axial transmission technique. Two quasi-point source elements, one transmitter and one receiver, were used to generate a wide ultrasonic beam including the longitudinal critical angle and to receive the signals radiated from the sample surface. Validation of the measuring technique was performed on test materials, followed by experiments on human cortical bones. Velocity measurements of the first arriving signal based on time-of-flight determinations were in agreement with reported values of longitudinal velocities for both test materials and bone specimens, and so did the experimental arrival times of the first arriving signal and ray arrival times of the lateral wave. The velocity in cortical bone ranged from 3600 to 4050 m.s/sup -1/. Our results strongly suggest that the first arriving signal corresponds to the lateral wave predicted by theory.
人皮质骨侧波的体外测量
利用轴向传输技术研究了体外超声在人皮质骨中的传播。采用两个准点源单元,一个发射端和一个接收端,产生包含纵向临界角的宽超声波束,接收样品表面辐射的信号。在测试材料上验证了测量技术,然后在人类皮质骨上进行了实验。基于飞行时间测定的第一次到达信号的速度测量值与报道的测试材料和骨标本的纵速值一致,第一次到达信号的实验到达时间和横波的射线到达时间也是如此。骨皮质内的速度范围为3600 ~ 4050 m.s/sup -1/。我们的结果强烈表明,第一个到达的信号与理论预测的侧波相对应。
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