Sebaa N, Fellah Z E A, Fellah M, Ogam E, Wirgin A, Mitri F G, Depollier C, Lauriks W
Laboratorium voor Akoestiek en Thermische Fysica, Katholieke Universiteit Leuven, Celestijnenlaan 200 D, B-3001 Heverlee, Belgium.
J Acoust Soc Am. 2006 Oct;120(4):1816-24. doi: 10.1121/1.2335420.
This paper concerns the ultrasonic characterization of human cancellous bone samples by solving the inverse problem using experimental transmitted signals. The ultrasonic propagation in cancellous bone is modeled using the Biot theory modified by the Johnson et al. model for viscous exchange between fluid and structure. The sensitivity of the Young modulus and the Poisson ratio of the skeletal frame is studied showing their effect on the fast and slow wave forms. The inverse problem is solved numerically by the least squares method. Five parameters are inverted: the porosity, tortuosity, viscous characteristic length, Young modulus, and Poisson ratio of the skeletal frame. The minimization of the discrepancy between experiment and theory is made in the time domain. The inverse problem is shown to be well posed, and its solution to be unique. Experimental results for slow and fast waves transmitted through human cancellous bone samples are given and compared with theoretical predictions.
本文通过使用实验传输信号求解反问题,研究了人体松质骨样本的超声特性。采用由约翰逊等人提出的用于流体与结构间粘性交换的模型修正后的比奥理论,对松质骨中的超声传播进行建模。研究了骨骼框架的杨氏模量和泊松比的灵敏度,展示了它们对快慢波波形的影响。采用最小二乘法对反问题进行数值求解。反演了五个参数:孔隙率、曲折度、粘性特征长度、杨氏模量和骨骼框架的泊松比。在时域中使实验与理论之间的差异最小化。结果表明,该反问题是适定的,其解是唯一的。给出了通过人体松质骨样本传输的快慢波的实验结果,并与理论预测进行了比较。