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Estimation of 2D displacement and strain field in high frequency ultrasound based elastography

机译:高频超声弹性成像中二维位移和应变场的估计

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High frequency ultrasound (HFUS) and intravascular ultrasound (IVUS) based elastography can be utilized for tissue elasticity imaging at a microscopic level. Mechanical strain fields inside the tissue are calculated as the spatial derivatives of estimated displacement fields. A technique for the estimation of 2D displacement fields is presented. Axial and lateral displacements in the imaging plane are estimated by tracking speckle in B-mode images and analyzing phase differences between image spectra. Concept and limitations of the proposed approach are discussed. Results are compared with an approach for 1D axial displacement estimation, which is based on the analysis of radio frequency (RF) echo signals. The implemented techniques were applied to asses skin elasticity and to analyze non-uniform rotational distortions (NURD) in IVUS with rotating single element transducers. Results of in vivo measurements are presented. It is shown that B-mode based strain imaging is feasible, provided that applied strains are sufficiently small to prevent decorrelation of echo signals.
机译:基于高频超声(HFUS)和血管内超声(IVUS)的弹性成像可用于微观水平的组织弹性成像。组织内部的机械应变场被计算为估计位移场的空间导数。提出了一种估计二维位移场的技术。通过跟踪B模式图像中的斑点并分析图像光谱之间的相位差,可以估算成像平面中的轴向和横向位移。讨论了该方法的概念和局限性。将结果与一维轴向位移估计方法进行比较,该方法基于对射频(RF)回波信号的分析。实施的技术被应用于评估皮肤弹性,并利用旋转的单元件换能器分析IVUS中的非均匀旋转畸变(NURD)。给出了体内测量的结果。如果施加的应变足够小以防止回波信号去相关,则表明基于B模式的应变成像是可行的。

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