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基于剪切波声弹衰减的组织黏弹性非线性特征分析。

Nonlinear Characterization of Tissue Viscoelasticity With Acoustoelastic Attenuation of Shear Waves.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2022 Jan;69(1):38-53. doi: 10.1109/TUFFC.2021.3105339. Epub 2021 Dec 31.

Abstract

Shear-wave elastography (SWE) measures shear-wave speed (SWS), which is related to the underlying shear modulus of soft tissue. SWS in soft tissue changes depending on the amount of external strain that soft tissue is subjected to due to the acoustoelastic (AE) phenomenon. In the literature, variations of SWS as a function of applied uniaxial strain were used for nonlinear characterization, assuming soft tissues to be elastic, although soft tissues are indeed viscoelastic in nature. Hence, nonlinear characterization using SWS alone is insufficient. In this work, we use SWS together with shear-wave attenuation (SWA) during incremental quasi-static compressions in order to derive biomechanical characterization based on the AE theory in terms of well-defined storage and loss moduli. As part of this study, we also quantify the effect of applied strain on measurements of SWS and SWA since such confounding effects need to be taken into account when using SWS and/or SWA, e.g., for staging a disease state, while such effects can also serve as an additional imaging biomarker. Our results from tissue-mimicking phantoms with varying oil percentages and ex vivo porcine liver experiments demonstrate the feasibility of our proposed methods. In both experiments, SWA was observed to decrease with applied strain. For 10% compression in ex vivo livers, shear-wave attenuation decreased, on average, by 28% (93 Np/m), while SWS increased, on average, by 20% (0.26 m/s).

摘要

剪切波弹性成像(SWE)测量剪切波速度(SWS),这与软组织的剪切弹性模量有关。由于声弹性(AE)现象,软组织中的 SWS 会随着软组织所承受的外部应变的大小而变化。在文献中,SWS 作为施加单轴应变的函数的变化用于非线性特征描述,假设软组织是弹性的,尽管软组织本质上确实是粘弹性的。因此,仅使用 SWS 进行非线性特征描述是不够的。在这项工作中,我们在递增准静态压缩过程中同时使用 SWS 和剪切波衰减(SWA),以便根据 AE 理论基于定义明确的存储和损耗模量来推导生物力学特征描述。作为这项研究的一部分,我们还量化了施加应变对 SWS 和 SWA 测量的影响,因为在使用 SWS 和/或 SWA 时需要考虑到这些混杂效应,例如在对疾病状态进行分期时,而这些效应也可以作为额外的成像生物标志物。我们使用具有不同油百分比的组织模拟体模和离体猪肝实验的结果证明了我们提出的方法的可行性。在这两个实验中,都观察到 SWA 随着施加的应变而减小。在离体肝脏中进行 10%的压缩时,剪切波衰减平均降低了 28%(93 Np/m),而 SWS 平均增加了 20%(0.26 m/s)。

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