Giannoula Alexia, Cobbold Richard S C
Institute of Biomaterials and Biomedical Engineering, University of Toronto, Toronto, Ontario M5S 3G9, Canada.
IEEE Trans Ultrason Ferroelectr Freq Control. 2008 Feb;55(2):343-58. doi: 10.1109/TUFFC.2008.653.
A highly localized source of low-frequency shear waves can be created by the modulated radiation force resulting from two intersecting quasi-continuous-wave ultrasound beams of slightly different frequencies. In contrast to most other radiation force-based methods, these shear waves can be narrowband. Consequently, different frequency-dependent effects will not significantly affect their spectrum as they propagate within a viscoelastic medium, thereby enabling the viscoelastic shear properties of the medium to be determined at any given modulation frequency. This can be achieved by tracking the shear wave phase delay and change in amplitude over a specific distance. In this paper we explore the properties of short duration (dynamic) low-frequency shear wave propagation and study how the shear displacement field depends on the excitation conditions. Our investigations make use of the approximate Green's functions for viscoelastic media, and the evolution of such waves is studied in the spatiotemporal domain from a theoretical perspective. Although nonlinearities are included in our confocal source model, just the properties of the fundamental shear component are examined in this paper. We examine how the shear wave propagation is affected by the shear viscosity, the coupling wave, the spatial distribution of the force, the shear speed, and the duration of the modulated wave. A method is proposed for estimating the shear viscosity of a viscoelastic medium. In addition, it is shown how the Voigt model paremeters can be extracted from the frequency-dependent speed and attenuation.
频率略有不同的两个相交准连续波超声束产生的调制辐射力,可形成低频剪切波的高度局部化源。与大多数其他基于辐射力的方法不同,这些剪切波可以是窄带的。因此,不同的频率相关效应在粘弹性介质中传播时,不会对其频谱产生显著影响,从而能够在任何给定的调制频率下确定介质的粘弹性剪切特性。这可以通过跟踪剪切波在特定距离上的相位延迟和振幅变化来实现。在本文中,我们探讨了短持续时间(动态)低频剪切波传播的特性,并研究了剪切位移场如何依赖于激发条件。我们的研究利用了粘弹性介质的近似格林函数,并从理论角度在时空域中研究了此类波的演化。尽管我们的共焦源模型中包含了非线性,但本文仅研究了基本剪切分量的特性。我们研究了剪切波传播如何受到剪切粘度、耦合波、力的空间分布、剪切速度和调制波持续时间的影响。提出了一种估计粘弹性介质剪切粘度的方法。此外,还展示了如何从频率相关的速度和衰减中提取沃伊特模型参数。