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首页> 外文期刊>Journal of Biomechanics >A Hertzian contact mechanics based formulation to improve ultrasound elastography assessment of uterine cervical tissue stiffness
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A Hertzian contact mechanics based formulation to improve ultrasound elastography assessment of uterine cervical tissue stiffness

机译:基于Hertzian接触力学的配方,可改善超声弹性成像对子宫宫颈组织硬度的评估

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Clinical practice requires improved techniques to assess human cervical tissue properties, especially at the internal os, or orifice, of the uterine cervix. Ultrasound elastography (UE) holds promise for non-invasively monitoring cervical stiffness throughout pregnancy. However, this technique provides qualitative strain images that cannot be linked to a material property (e.g., Young's modulus) without knowledge of the contact pressure under a rounded transvaginal transducer probe and correction for the resulting non-uniform strain dissipation. One technique to standardize elastogram images incorporates a material of known properties and uses one-dimensional, uniaxial Hooke's law to calculate Young's modulus within the compressed material half-space. However, this method does not account for strain dissipation and the strains that evolve in three-dimensional space. We demonstrate that an analytical approach based on 3D Hertzian contact mechanics provides a reasonable first approximation to correct for UE strain dissipation underneath a round transvaginal transducer probe and thus improves UE-derived estimates of tissue modulus. We validate the proposed analytical solution and evaluate sources of error using a finite element model. As compared to 1D uniaxial Hooke's law, the Hertzian contact-based solution yields significantly improved Young's modulus predictions in three homogeneous gelatin tissue phantoms possessing different moduli. We also demonstrate the feasibility of using this technique to image human cervical tissue, where UE-derived moduli estimations for the uterine cervix anterior lip agreed well with published, experimentally obtained values. Overall, UE with an attached reference standard and a Hertzian contact-based correction holds promise for improving quantitative estimates of cervical tissue modulus. (C) 2015 Elsevier Ltd. All rights reserved.
机译:临床实践需要改进的技术来评估人的宫颈组织特性,尤其是在子宫颈的内口或口处。超声弹性成像(UE)有望在整个怀孕期间无创地监测宫颈僵硬度。然而,该技术提供了定性应变图像,如果不了解圆形经阴道换能器探头下的接触压力以及对产生的不均匀应变耗散的校正,就不能将其与材料特性(例如杨氏模量)联系起来。一种标准化弹性成像图像的技术结合了一种具有已知属性的材料,并使用一维单轴胡克定律来计算压缩材料半空间内的杨氏模量。但是,此方法不考虑应变耗散和在三维空间中演化的应变。我们证明基于3D Hertzian接触力学的分析方法提供了合理的第一近似值,以校正圆形经阴道换能器探头下的UE应变耗散,从而改善了UE衍生的组织模量估计值。我们验证提出的分析解决方案,并使用有限元模型评估误差来源。与一维单轴胡克定律相比,基于赫兹接触的解决方案在具有不同模量的三个均质明胶组织体模中产生了显着改善的杨氏模量预测。我们还证明了使用此技术对人体宫颈组织成像的可行性,其中UE得出的子宫颈前唇的模量估计值与已发表的,通过实验获得的值非常吻合。总体而言,具有附加参考标准和基于赫兹接触的校正的UE有望改善宫颈组织模量的定量估计。 (C)2015 Elsevier Ltd.保留所有权利。

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