首页> 外文会议>Ultrasonics Symposium (IUS), 2008 IEEE >Investigating the effects of viscosity on focused, impulsive, acoustic radiation force induced shear wave morphology
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Investigating the effects of viscosity on focused, impulsive, acoustic radiation force induced shear wave morphology

机译:研究粘度对聚焦,脉冲,声辐射力引起的剪切波形态的影响

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The effect of dispersion on the morphology of impulsive acoustic radiation force induced shear waves propagating in viscoelastic (VE) media is investigated. Change in shear wave morphology was quantified by calculating its spatial coherence. The magnitude of the slope of the spatial coherence as a function of propagation distance, or decorrelation rate, was used to compare the VE behavior of different materials. Shear waves in VE media with a range of material properties were simulated using Finite Element Method (FEM) models and a three parameter standard linear solid model of viscoelasticity. Shear wave decorrelation rate increased with the amount of stress relaxation occurring within the temporal extent of the shear wave. Shear wave decorrelation rate can therefore be used to discriminate ranges of VE behavior. In experimental data collected using a modified Siemens AntaresTM scanner, the shear wave decorrelation rate was significantly higher for a VE phantom than one constructed of an elastic material. In preliminary in vivo human liver data, shear wave decorrelation was found to be present and variable among different patients. The relationship between liver viscosity as quantified by shear wave spatial coherence and disease states is being investigated.
机译:研究了色散对在声弹性(VE)介质中传播的脉冲声辐射力引起的剪切波形态的影响。通过计算其空间相干性来量化剪切波形态的变化。空间相干的斜率大小随传播距离或去相关速率而变,用于比较不同材料的VE行为。使用有限元方法(FEM)模型和粘弹性的三参数标准线性固体模型,模拟了具有各种材料特性的VE介质中的剪切波。剪切波解相关速率随着在剪切波的时间范围内发生的应力松弛量的增加而增加。因此,剪切波解相关速率可用于区分VE行为的范围。在使用改进的Siemens AntaresTM扫描仪收集的实验数据中,VE体模的剪切波去相关率明显高于由弹性材料制成的体模。在体内人肝的初步数据中,发现剪切波去相关存在并且在不同患者之间变化。正在研究通过剪切波空间相干性量化的肝脏粘度与疾病状态之间的关系。

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