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Characterization of nonlinear viscoelastic properties of Ultrasound Contrast Agents

机译:超声造影剂的非线性粘弹性特性表征

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Ultrasound Contrast Agents (UCAs) composed of gaseous microbubbles exhibit acoustic properties that differ from those of surrounding tissue. In order to increase the contrast to tissue ratio, it is necessary to propose methods that characterize optimally the ultrasonic properties of UCAs. The aim of this study is to measure the viscoelastic properties of UCAs using a Dynamic Acousto-Elastic (DAE) method. The approach, based on the interaction of two acoustic waves, provides non-contact and localized measurements of viscoelastic and dissipative nonlinearities of UCAs. Sonovue and BR14 UCAs (BraccoResearch, GE) were thus characterized at two different probing frequencies (1 MHZ, 2 MHz) and two dilutions (1/100 and 1/1000). As expected very high viscoelastic and dissipative nonlinearities were obtained. Hysteresis and asymmetries between compression and expansion phases are observed for both viscoelastic and dissipative parameters. Same trends were seen for BR14 and SonoVue. The probing pulse frequencies and the dilutions provide different results for viscoelastic nonlinearities, whereas only dilutions impact the dissipative nonlinearities.
机译:由气态微泡组成的超声造影剂(UCA)的声学特性不同于周围组织的声学特性。为了增加与组织比率的对比度,有必要提出能够最佳表征UCA超声特性的方法。这项研究的目的是使用动态声弹(DAE)方法测量UCA的粘弹性。该方法基于两个声波的相互作用,提供了UCA的粘弹性和耗散非线性的非接触和局部测量。因此,Sonovue和BR14 UCA(BraccoResearch,GE)在两个不同的探测频率(1 MHZ,2 MHz)和两个稀释度(1/100和1/1000)下进行了表征。如预期的那样,获得了非常高的粘弹性和耗散非线性。对于粘弹性和耗散参数,都可以观察到压缩和膨胀阶段之间的磁滞和非对称性。 BR14和SonoVue也看到了相同的趋势。探测脉冲频率和稀释度为粘弹性非线性提供了不同的结果,而只有稀释度影响耗散非线性。

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