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Magnetic resonance elastography of slow and fast shear waves illuminates differences in shear and tensile moduli in anisotropic tissue

机译:慢速和快速剪切波的磁共振弹性成像显示了各向异性组织中剪切模量和拉伸模量的差异

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摘要

Mechanical anisotropy is an important property of fibrous tissues; for example, the anisotropic mechanical properties of brain white matter may play a key role in the mechanics of traumatic brain injury (TBI). The simplest anisotropic material model for small deformations of soft tissue is a nearly incompressible, transversely isotropic (ITI) material characterized by three parameters: minimum shear modulus (μ), shear anisotropy (ϕ = μ1/μ − 1) and tensile anisotropy (ζ = E1/E2 − 1). These parameters can be determined using magnetic resonance elastography (MRE) to visualize shear waves, if the angle between the shear-wave propagation direction and fiber direction is known. Most MRE studies assume isotropic material models with a single shear (μ) or tensile (E) modulus. In this study, two types of shear waves, “fast” and “slow”, were analyzed for a given propagation direction to estimate anisotropic parameters μ, ϕ, and ζ in two fibrous soft materials: turkey breast ex vivo and aligned fibrin gels. As expected, the speed of slow shear waves depended on the angle between fiber direction and propagation direction. Fast shear waves were observed when the deformations due to wave motion induced stretch in the fiber direction. Finally, MRE estimates of anisotropic mechanical properties in turkey breast were compared to estimates from direct mechanical tests.
机译:机械各向异性是纤维组织的重要特性。例如,脑白质的各向异性力学特性可能在创伤性脑损伤(TBI)的力学中起关键作用。用于软组织小变形的最简单的各向异性材料模型是几乎不可压缩的横向各向同性(ITI)材料,其特征在于三个参数:最小剪切模量(μ),剪切各向异性(ϕ =μ1/μ-1)和拉伸各向异性(ζ) = E1 / E2-1)。如果已知剪切波传播方向和纤维方向之间的夹角,则可以使用磁共振弹性成像(MRE)确定这些参数,以可视化剪切波。大多数MRE研究均假设各向同性材料模型具有单剪切(μ)或拉伸(E)模量。在这项研究中,针对给定的传播方向分析了两种类型的剪切波,“快”和“慢”,以估计两种纤维状软材料中的各向异性参数μ、,和ζ:离体的火鸡胸肉和对齐的纤维蛋白凝胶。不出所料,慢剪切波的速度取决于纤维方向和传播方向之间的角度。当由于波浪运动引起的变形引起沿纤维方向的拉伸时,观察到快速剪切波。最后,将火鸡胸肉的各向异性力学性能的MRE估计值与直接机械测试的估计值进行了比较。

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