Berkhoff A P, Thijssen J M, Homan R J
Department of Ophthalmology, St. Radboud University Hospital, Nijmegen, The Netherlands.
Ultrasound Med Biol. 1996;22(2):245-59. doi: 10.1016/0301-5629(95)02034-9.
Rigorous and efficient numerical methods are presented for simulation of acoustic propagation in a medium where the absorption is described by relaxation processes. It is shown how FFT-based algorithms can be used to simulate ultrasound images in pulse-echo mode. General expressions are obtained for the complex wavenumber in a relaxing medium. A fit to measurements in biological media shows the appropriateness of the model. The wavenumber is applied to three FFT-based extrapolation operators, which are implemented in a weak form to reduce spatial aliasing. The influence of the absorptive medium on the quality of images obtained with a linear array transducer is demonstrated. It is shown that, for moderately absorbing media, the absorption has a large influence on the images, whereas the dispersion has a negligible effect on the images.
本文提出了严格且高效的数值方法,用于模拟吸收由弛豫过程描述的介质中的声波传播。展示了基于快速傅里叶变换(FFT)的算法如何用于脉冲回波模式下超声图像的模拟。得到了弛豫介质中复波数的一般表达式。与生物介质测量结果的拟合表明了该模型的适用性。将波数应用于三个基于FFT的外推算子,这些算子以弱形式实现以减少空间混叠。证明了吸收介质对使用线性阵列换能器获得的图像质量的影响。结果表明,对于中等吸收介质,吸收对图像有很大影响,而频散对图像的影响可忽略不计。