Paul Shirshendu, Katiyar Amit, Sarkar Kausik, Chatterjee Dhiman, Shi William T, Forsberg Flemming
Department of Mechanical Engineering, University of Delaware, Newark, Delaware 19716, USA.
J Acoust Soc Am. 2010 Jun;127(6):3846-57. doi: 10.1121/1.3418685.
Two nonlinear interfacial elasticity models--interfacial elasticity decreasing linearly and exponentially with area fraction--are developed for the encapsulation of contrast microbubbles. The strain softening (decreasing elasticity) results from the decreasing association between the constitutive molecules of the encapsulation. The models are used to find the characteristic properties (surface tension, interfacial elasticity, interfacial viscosity and nonlinear elasticity parameters) for a commercial contrast agent. Properties are found using the ultrasound attenuation measured through a suspension of contrast agent. Dynamics of the resulting models are simulated, compared with other existing models and discussed. Imposing non-negativity on the effective surface tension (the encapsulation experiences no net compressive stress) shows "compression-only" behavior. The exponential and the quadratic (linearly varying elasticity) models result in similar behaviors. The validity of the models is investigated by comparing their predictions of the scattered nonlinear response for the contrast agent at higher excitations against experimental measurement. All models predict well the scattered fundamental response. The nonlinear strain softening included in the proposed elastic models of the encapsulation improves their ability to predict subharmonic response. They predict the threshold excitation for the initiation of subharmonic response and its subsequent saturation.
针对超声造影微泡的包膜,建立了两种非线性界面弹性模型——界面弹性随面积分数呈线性和指数递减。应变软化(弹性降低)是由于包膜的本构分子之间的缔合减少所致。这些模型用于确定一种商用造影剂的特性(表面张力、界面弹性、界面粘度和非线性弹性参数)。通过测量造影剂悬浮液的超声衰减来确定这些特性。对所得模型的动力学进行了模拟,与其他现有模型进行了比较并展开了讨论。对有效表面张力施加非负性条件(包膜不承受净压缩应力)显示出“仅压缩”行为。指数模型和二次(线性变化弹性)模型产生相似的行为。通过将模型对造影剂在较高激发下的散射非线性响应的预测与实验测量结果进行比较来研究模型的有效性。所有模型对散射基波响应的预测都很好。所提出的包膜弹性模型中包含的非线性应变软化提高了它们预测次谐波响应的能力。它们预测了次谐波响应起始的阈值激发及其随后的饱和情况。