Ultrasonic scattering in deformed media and the effects on strain imaging

M. Insana, T. Hall, P. Chaturvedi
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引用次数: 1

Abstract

Acoustic properties of tissue-like media with stiff and soft scatterers were measured as a function of compressive strain up to 40%. Uniaxial strain measurements were analyzed to test the assumption that local properties of wave propagation and scattering are invariant under deformation. We found that echo spectra of gel media with soft scatterers varied significantly and predictably during compression. Specifically, centroids of Gaussian echo spectra were shifted to higher frequencies in proportion to the compressive strain applied up to 10%, and increased monotonically up to 49% at a rate depending on the scatterer size. The results explain why there is often more echo decorrelation produced in tissues than in commonly used graphite-gelatin test phantoms.
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变形介质中的超声散射及其对应变成像的影响
具有硬散射体和软散射体的类组织介质的声学特性作为压缩应变的函数被测量到高达40%。通过对单轴应变测量结果的分析,验证了变形条件下波传播和散射局部特性不变的假设。我们发现,在压缩过程中,具有软散射体的凝胶介质的回波光谱变化显著且可预测。具体来说,高斯回波频谱的质心与施加的压缩应变成比例地向更高的频率移动(最大为10%),并以取决于散射体大小的速率单调增加(最大为49%)。结果解释了为什么组织中产生的回声去相关比通常使用的石墨-明胶测试模型中产生的回声去相关更多。
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