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骨皮质厚度对超声轴向传输速度测量的影响:二维模拟研究

Effect of bone cortical thickness on velocity measurements using ultrasonic axial transmission: a 2D simulation study.

作者信息

Bossy Emmanuel, Talmant Maryline, Laugier Pascal

机构信息

Laboratoire d'Imagerie Paramétrique, UMR CNRS 7623, Université Paris VI, France.

出版信息

J Acoust Soc Am. 2002 Jul;112(1):297-307. doi: 10.1121/1.1480836.

Abstract

In recent years, quantitative ultrasound (QUS) has played an increasing role in the assessment of bone status. The axial transmission technique allows to investigate skeletal sites such as the cortical layer of long bones (radius, tibia), inadequate to through-transmission techniques. Nevertheless, the type of propagation involved along bone specimens has not been clearly elucidated. Axial transmission is investigated here by means of two-dimensional simulations at 1 MHz. We focus our interest on the apparent speed of sound (SOS) of the first arriving signal (FAS). Its dependence on the thickness of the plate is discussed and compared to previous work. Different time criteria are used to derive the apparent SOS of the FAS as a function of source-receiver distance. Frequency-wave number analysis is performed in order to understand the type of propagation involved. For thick plates (thickness>lambdabone, longitudinal wavelength in bone), and for a limited range of source-receiver distances, the FAS corresponds to the lateral wave. Its velocity equals the longitudinal bulk velocity of the bone. For plate thickness less than lambdabone, some plate modes contribute to the FAS, and the apparent SOS decreases with the thickness in a way that depends on both the time criterion and on the source-receiver distance. The FAS corresponds neither to the lateral wave nor to a single plate mode. For very thin plates (thickness< lambdabone/4), the apparent SOS tends towards the velocity of the lowest order symmetrical vibration mode (S0 Lamb mode).

摘要

近年来,定量超声(QUS)在骨状态评估中发挥着越来越重要的作用。轴向传输技术能够研究长骨(桡骨、胫骨)皮质层等骨骼部位,而穿透传输技术对此并不适用。然而,沿骨标本传播的类型尚未得到明确阐释。本文通过1MHz的二维模拟对轴向传输进行了研究。我们关注的是首个到达信号(FAS)的表观声速(SOS)。讨论了其对骨板厚度的依赖性,并与之前的研究进行了比较。使用不同的时间标准来推导FAS的表观SOS作为源-接收器距离的函数。进行了频率-波数分析,以了解所涉及的传播类型。对于厚骨板(厚度>λbone,骨中的纵向波长),以及在有限的源-接收器距离范围内,FAS对应于侧向波。其速度等于骨的纵向体波速度。对于厚度小于λbone的骨板,一些板模式对FAS有贡献,表观SOS随厚度减小,其减小方式取决于时间标准和源-接收器距离。FAS既不对应于侧向波,也不对应于单一的板模式。对于非常薄的骨板(厚度<λbone/4),表观SOS趋向于最低阶对称振动模式(S0兰姆波模式)的速度。

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