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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Bidirectional axial transmission can improve accuracy and precision of ultrasonic velocity measurement in cortical bone: a validation on test materials
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Bidirectional axial transmission can improve accuracy and precision of ultrasonic velocity measurement in cortical bone: a validation on test materials

机译:双向轴向传输可以提高皮质骨中超声波速度测量的精度和精度:测试材料的验证

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摘要

The axial transmission technique uses a linear arrangement of ultrasonic emitters and receivers placed on a same side of a cortical bone site in contact with the skin, involving ultrasonic propagation along the axis of bone. The velocity of the waves radiated from bone has been shown to reflect bone status. The thickness and composition of soft tissue may vary along the length of the bone, between different skeletal sites, or between subjects. Hence, accurate estimates of velocity require first to eliminate the effect of the overlying soft tissue that is traversed by the ultrasound wave. To correct for such bias without measuring soft tissue properties, we designed new ultrasonic probes in the 1-2 MHz frequency range. It is based on propagation along the bone surface in two opposite directions from two sources placed on both sides of a unique group of receivers. The aim is to obtain an unbiased estimate of the velocity without any intermediate calculation of soft tissue properties, such as thickness variation or velocity. Validation tests were performed on academic material such as Perspex or aluminium. We found that head wave velocity values could be biased by more than 10% for inclination of a few degrees between the test specimen surface and the probe. On test materials, the compensation procedure implemented in our probe led to a relative precision error on velocity measurement lower than 0.2 to 0.3%. These results suggest that the correction procedure allows measuring in vivo velocities independently of soft tissue properties.
机译:轴向传输技术使用超声发射器和接收器的线性布置,接收器放置在与皮肤接触的皮质骨头位点的同一侧上,涉及沿着骨轴的超声波传播。已显示从骨辐射的波的速度反映骨骼状态。软组织的厚度和组成可以沿着骨头的长度,不同的骨骼部位或受试者之间变化。因此,准确的速度估计要求首先消除由超声波穿过的覆盖软组织的效果。为了纠正这种偏差而不测量软组织特性,我们在1-2MHz频率范围内设计了新的超声波探头。它基于沿着骨表面的传播,从两个相反的方向,从一个独特的接收器的两侧的两个源相反。目的是获得对速度的无偏见估计,而无需任何中间计算软组织特性,例如厚度变化或速度。验证测试是在学术材料上进行的,例如Perspex或铝。我们发现头部波速度值可以偏置超过10%,以便在试样表面和探针之间倾斜几度倾斜。在测试材料上,在我们的探针中实施的补偿程序导致对速度测量的相对精度误差低于0.2至0.3%。这些结果表明,校正程序允许独立于软组织特性测量体内速度。

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