X-wave Innovations Incorporated, Gaithersburg, Maryland 20878, USA.
J Acoust Soc Am. 2019 Aug;146(2):1394. doi: 10.1121/1.5123486.
The acoustic nonlinearity parameter B/A plays a significant role in the characterization of acoustic properties of various biomaterials and biological tissues. It has the potential to be a favorable imaging modality in contrast ultrasound imaging with coated microbubbles. However, the development of effective means for evaluating the nonlinearity parameter of suspensions of ultrasound contrast agents (UCAs, also known as bubbly liquids) remains open. The present paper formulates a new equation based on the thermodynamic method that correlates both attenuation and phase velocity of linear ultrasound. The simplicity of the present method makes the B/A estimation possible with a relatively rigorous mathematical derivation. The calculated nonlinearity parameter contains the contribution of dynamic effects of bubbles, and its low-frequency limit agrees with B/A estimated by the method of mixture law when the volume fraction is below 10. Furthermore, the maximum B/A in bubbly liquids can reach up to10, while the minimum can be as low as -10. The negative nonlinearity parameter indicates significantly different thermodynamic properties of bubbly liquids.
声非线性参数 B/A 在各种生物材料和生物组织的声学特性表征中起着重要作用。它有可能成为一种有前途的成像方式,与涂层微泡的对比超声成像相比。然而,开发用于评估超声造影剂(UCA,也称为泡沫液体)悬浮液的非线性参数的有效手段仍然存在。本文基于热力学方法,提出了一种新的方程,该方程与线性超声的衰减和相速度相关。本方法的简单性使得通过相对严格的数学推导来估计 B/A 成为可能。计算得到的非线性参数包含了气泡动力学效应的贡献,并且当体积分数低于 10 时,其低频极限与混合定律方法估计的 B/A 一致。此外,泡沫液体中的最大 B/A 可达 10,而最小可低至-10。负非线性参数表明泡沫液体具有显著不同的热力学性质。