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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >1-D elasticity assessment in soft solids from shear wave correlation: the time-reversal approach
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1-D elasticity assessment in soft solids from shear wave correlation: the time-reversal approach

机译:基于剪切波相关性的软固体一维弹性评估:时间反转方法

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摘要

One-channel time-reversal (TR) experiments allow focalization of waves in reverberant cavities. According to the Rayleigh criterion, the focal spot width is directly related to the wavelength and therefore depends on the mechanical properties of the medium. Thus, the general idea of this work is to extract quantitative estimations of these mechanical properties using a time-reversal approach based on cross-correlations of the wave field. An external source creates mechanical waves in the audible frequency range. One component of the vectorial field is measured along a line as function of time with signal processing developed in the field of 1-D elastography. The shear wavelength information is deduced from these mechanical waves using spatiotemporal correlations and interpreted in the frame of the time-reversal symmetry. The impact of wave attenuation in soft solids is reduced using a spatial average of the correlation field. The result is shown to be suitable for global elasticity estimation. The advantage is that the technique is almost independent of the source kind, shape, and time excitation function. This robustness as regard to shear wave source allows translation of this technique to applications in the medical field, including deep or moving organs.
机译:单通道时间反转(TR)实验允许在混响腔中聚焦波。根据瑞利准则,焦点宽度直接与波长相关,因此取决于介质的机械性能。因此,这项工作的总体思路是使用基于波场互相关的时间反转方法来提取这些机械性能的定量估计值。外部源会在可听频率范围内产生机械波。矢量场的一个分量是根据一维弹性成像领域开发的信号处理,沿一条线作为时间的函数进行测量的。剪切波长信息是使用时空相关性从这些机械波推导出来的,并在时间反转对称的框架内进行解释。使用相关场的空间平均值可以减小波在软固体中的衰减影响。结果表明,该结果适用于整体弹性估计。优点是该技术几乎与源的种类,形状和时间激励函数无关。关于剪切波源的这种鲁棒性允许将该技术转化为医学领域的应用,包括深部或移动的器官。

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