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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Application of 1-d transient elastography for the shear modulus assessment of thin-layered soft tissue: comparison with supersonic shear imaging technique
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Application of 1-d transient elastography for the shear modulus assessment of thin-layered soft tissue: comparison with supersonic shear imaging technique

机译:一维瞬态弹性成像在薄层软组织剪切模量评估中的应用:与超声剪切成像技术的比较

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摘要

Elasticity estimation of thin-layered soft tissues has gained increasing interest propelled by medical applications like skin, corneal, or arterial wall shear modulus assessment. In this work, the authors propose one-dimensional transient elastography (1DTE) for the shear modulus assessment of thin-layered soft tissue. Experiments on three phantoms with different elasticities and plate thicknesses were performed. First, using 1DTE, the shear wave speed dispersion curve inside the plate was obtained and validated with finite difference simulation. No dispersive effects were observed and the shear wave speed was directly retrieved from time-of-flight measurements. Second, the supersonic shear imaging (SSI) technique (considered to be a gold standard) was performed. For the SSI technique, the propagating wave inside the plate is guided as a Lamb wave. Experimental SSI dispersion curves were compared with finite difference simulation and fitted using a generalized Lamb model to retrieve the plate bulk shear wave speed. Although they are based on totally different mechanical sources and induce completely different diffraction patterns for the shear wave propagation, the 1DTE and SSI techniques resulted in similar shear wave speed estimations. The main advantage of the 1DTE technique is that bulk shear wave speed can be directly retrieved without requiring a dispersion model.
机译:薄层软组织的弹性估计越来越受到医学应用(如皮肤,角膜或动脉壁剪切模量评估)的关注。在这项工作中,作者提出了一维瞬态弹性成像技术(1DTE)用于薄层软组织的剪切模量评估。对具有不同弹性和板厚的三个体模进行了实验。首先,使用1DTE,获得板内部的剪切波速度色散曲线,并通过有限差分仿真对其进行验证。没有观察到色散效应,并且从飞行时间测量中直接获取了剪切波速度。其次,进行了超音速剪切成像(SSI)技术(被认为是金标准)。对于SSI技术,板内的传播波被引导为兰姆波。将实验SSI色散曲线与有限差分模拟进行比较,并使用广义Lamb模型进行拟合,以恢复板块的剪切波速度。尽管它们基于完全不同的机械源,并为剪切波传播引入完全不同的衍射图样,但是1DTE和SSI技术得出的剪切波速估算值相似。 1DTE技术的主要优点是可以直接获取整体剪切波速度,而无需色散模型。

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