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软组织样材料中的立方非线性和表面冲击波。

Cubic nonlinearity and surface shock waves in soft tissue-like materials.

作者信息

Alarcón Héctor, Galaz Belfor, Espíndola David

机构信息

Departamento de Física y Química, Facultad de Ingeniería, Universidad Autónoma de Chile, Av. Pedro de Valdivia 425, Providencia, Santiago, 7500912, Chile.

Departamento de Física, Universidad de Santiago de Chile, Av. Víctor Jara 3493, Casilla 307, Correo 2, Estación Central, Santiago, 9160000, Chile.

出版信息

Ultrasonics. 2025 Jan;145:107469. doi: 10.1016/j.ultras.2024.107469. Epub 2024 Sep 19.

Abstract

The cubic nonlinearity of shear wave propagation plays a significant role in brain injury biomechanics. However, soft materials, like the brain, also support the propagation of surface waves, which produce a combination of longitudinal and transverse deformation. The order of the nonlinearity of surface waves in soft materials is still unknown. Here, we directly observe nonlinear Scholte waves propagating in an interface formed by an incompressible gelatin tissue-mimicking phantom and a water layer using ultrasound imaging operated as fast as 16667 frames per second. A two-dimensional correlation-based tracking algorithm was utilized to extract movies of the movement produced by the surface wave. Our results show that the initially nearly monochromatic wave becomes progressively distorted with the propagation due to nonlinearity. The distortion of the wave and its frequency spectrum indicate a high content of odd harmonics when compared with even harmonics. Additionally, by fitting our experimental data to a minimalist one-dimensional model based on the wave speed variation as a function of the perturbation amplitude, we found a cubic nonlinear parameter 46 times larger than the quadratic nonlinear parameter. Overall, the wave distortion, the harmonic development, and the dependence of the wave speed with the amplitude prove that cubic nonlinearity is essential to modeling nonlinear Scholte wave propagation.

摘要

剪切波传播的三次非线性在脑损伤生物力学中起着重要作用。然而,像大脑这样的软材料也支持表面波的传播,表面波会产生纵向和横向变形的组合。软材料中表面波非线性的阶数仍然未知。在这里,我们使用每秒高达16667帧的超声成像直接观察在由不可压缩的明胶组织模拟体模和水层形成的界面中传播的非线性肖尔特波。利用基于二维相关性的跟踪算法来提取表面波产生的运动的影片。我们的结果表明,由于非线性,最初几乎单色的波在传播过程中逐渐失真。与偶次谐波相比,波的失真及其频谱表明奇次谐波含量很高。此外,通过将我们的实验数据拟合到一个基于波速随扰动幅度变化的极简一维模型,我们发现三次非线性参数比二次非线性参数大46倍。总体而言,波的失真、谐波发展以及波速与幅度的依赖性证明三次非线性对于模拟非线性肖尔特波传播至关重要。

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