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Nonlinear viscoelastic constitutive model for bovine liver tissue

机译:牛肝组织的非线性粘弹性本构模型

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Soft tissue mechanical characterisation is important in many areas of medical research. Examples span from surgery training, device design and testing, sudden injury and disease diagnosis. The liver is of particular interest, as it is the most commonly injured organ in frontal and side motor vehicle crashes, and also assessed for inflammation and fibrosis in chronic liver diseases. Hence, an extensive rheological characterisation of liver tissue would contribute to advancements in these areas, which are dependent upon underlying biomechanical models. The aim of this paper is to define a liver constitutive equation that is able to characterise the nonlinear viscoelastic behaviour of liver tissue under a range of deformations and frequencies. The tissue response to large amplitude oscillatory shear (1-50%) under varying preloads (1-20%) and frequencies (0.5-2 Hz) is modelled using viscoelastic-adapted forms of the Mooney-Rivlin, Ogden and exponential models. These models are fit to the data using classical or modified objective norms. The results show that all three models are suitable for capturing the initial nonlinear regime, with the latter two being capable of capturing, simultaneously, the whole deformation range tested. The work presented here provides a comprehensive analysis across several material models and norms, leading to an identifiable constitutive equation that describes the nonlinear viscoelastic behaviour of the liver.
机译:软组织机械表征在许多医学研究领域很重要。例子跨度从外科训练,设备设计和测试,突发伤害和疾病诊断。肝脏特别令人兴趣,因为它是前侧机动车崩溃中最常见的受伤器官,并且还评估了慢性肝病中的炎症和纤维化。因此,肝脏组织的广泛流变表征将有助于这些区域的进步,这取决于底层生物力学模型。本文的目的是定义肝脏组成型方程,其能够在一系列变形和频率下表征肝组织的非线性粘弹性行为。使用粘弹性适应的Mooney-RIVLIN,OGDEN和指数模型的模型建模对不同预载荷(1-20%)和频率(0.5-2Hz)的大振幅振荡剪切(1-50%)的组织反应。这些模型适合使用经典或修改的客观规范的数据。结果表明,所有三种模型适合于捕获初始非线性方案,后两者能够同时捕获整个变形范围。这里提出的工作在几种材料模型和规范中提供了全面的分析,导致可识别的本构型方程,其描述了肝脏的非线性粘弹性行为。

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