CNRS, UPMC Univ Paris 06, UMR 7623, LIP, 15 rue de l'école de médecine F-75006, Paris, France.
J Acoust Soc Am. 2011 Dec;130(6):3574-82. doi: 10.1121/1.3652884.
Robust signal processing methods adapted to clinical measurements of guided modes are required to assess bone properties such as cortical thickness and porosity. Recently, an approach based on the singular value decomposition (SVD) of multidimensional signals recorded with an axial transmission array of emitters and receivers has been proposed for materials with negligible absorption, see Minonzio et al. [J. Acoust. Soc. Am. 127, 2913-2919 (2010)]. In presence of absorption, the ability to extract guided mode degrades. The objective of the present study is to extend the method to the case of absorbing media, considering attenuated plane waves (complex wavenumber). The guided mode wavenumber extraction is enhanced and the order of magnitude of the attenuation of the guided mode is estimated. Experiments have been carried out on 2 mm thick plates in the 0.2-2 MHz bandwidth. Two materials are inspected: polymethylacrylate (PMMA) (isotropic with absorption) and artificial composite bones (Sawbones, Pacific Research Laboratory Inc, Vashon, WA) which is a transverse isotropic absorbing medium. Bulk wave velocities and bulk attenuation have been evaluated from transmission measurements. These values were used to compute theoretical Lamb mode wavenumbers which are consistent with the experimental ones obtained with the SVD-based approach.
需要适应导波临床测量的稳健信号处理方法来评估皮质厚度和孔隙率等骨特性。最近,已经提出了一种基于具有发射器和接收器的轴向传输阵列记录的多维信号的奇异值分解(SVD)的方法,用于吸收可忽略不计的材料,见 Minonzio 等人[J. 声学学会杂志 127, 2913-2919(2010)]。在存在吸收的情况下,提取导波的能力会降低。本研究的目的是将该方法扩展到吸收介质的情况,考虑衰减平面波(复波数)。导波的波数提取得到增强,并且估计了导波的衰减量级。实验在 0.2-2 MHz 带宽的 2 毫米厚的板上进行。检查了两种材料:聚甲基丙烯酸甲酯(PMMA)(各向同性且具有吸收性)和人工复合骨(Sawbones,Pacific Research Laboratory Inc,Vashon,WA),这是一种横观各向同性吸收介质。从透射测量中评估了体波速度和体衰减。这些值用于计算理论 Lamb 模式波数,这些波数与基于 SVD 的方法获得的实验波数一致。