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首页> 外文期刊>Physics in medicine and biology. >An automatic differentiation-based gradient method for inversion of the shear wave equation in magnetic resonance elastography: specific application in fibrous soft tissues
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An automatic differentiation-based gradient method for inversion of the shear wave equation in magnetic resonance elastography: specific application in fibrous soft tissues

机译:磁共振弹性成像中剪力波动方程反演的自动分化基梯度法:纤维软组织的特异性应用

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摘要

Quantitative and accurate measurement of in vivo mechanical properties using dynamic elastography has been the scope of many research efforts over the past two decades. Most of the shear-wave-based inverse approaches for magnetic resonance elastography (MRE) make the assumption of isotropic viscoelasticity. In this paper, we propose a quantitative gradient method for inversion of the shear wave equation in anisotropic media derived from a full waveform description using analytical viscoelastic Green formalism and automatic differentiation. The abilities and performances of the proposed identification method are first evaluated on numerical phantoms calculated in a transversely isotropic medium, and subsequently on experimental MRE data measured on an isotropic hydrogel phantom, on an anisotropic cryogel phantom and on an ex vivo fibrous muscle. The experiments are carried out by coupling circular shear wave profiles generated by acoustic radiation force and MRE acquisition of the wave front. Shear modulus values obtained by our MRE method are compared to those obtained by rheometry in the isotropic hydrogel phantom, and are found to be in good agreement despite non-overlapping frequency ranges. Both the cryogel and the ex vivo muscle are found to be anisotropic. Stiffness values in the longitudinal direction are found to be 1.8 times and 1.9 times higher than those in the transverse direction for the cryogel and the muscle, respectively. The proposed method shows great perspectives and substantial benefits for the in vivo quantitative investigation of complex mechanical properties in fibrous soft tissues.
机译:使用动态弹性显影的体内机械性能的定量和准确测量是过去二十年来许多研究工作的范围。大多数基于剪切波的磁共振弹性术(MRE)的逆接近方法是对各向同性粘弹性的假设。本文提出了一种定量梯度方法,用于使用分析粘弹性绿色形式主义和自动分化从全波形描述导出的各向异性介质中的剪切波方程的反转。首先在横向各向同性培养基中计算的数值模子,随后对在各向同性水凝胶幻影上测量的实验性MRE数据进行评估,在各向异性冷冻凝胶肌瘤和离体纤维肌上测量的实验性MRE数据进行评估。通过耦合由声辐射力和波浪前线的MRE获取产生的圆形剪切波形曲线来进行实验。将通过我们的MRE方法获得的剪切模量值与通过各向同性水凝胶幻像中的流变学获得的剪切模量值,并且尽管存在非重叠频率范围,因此发现良好的一致性。 cryogel和离体肌肉都被发现是各向异性的。发现纵向方向上的刚度值分别比冷冻凝胶和肌肉中的横向高1.8倍,1.9倍。该方法对纤维软组织中复杂机械性能的体内定量研究表明了良好的视角和实质性益处。

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