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A transverse isotropic viscoelastic constitutive model for aortic valve tissue

机译:主动脉瓣组织横观各向同性粘弹性本构模型

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摘要

A new anisotropic viscoelastic model is developed for application to the aortic valve (AV). The directional dependency in the mechanical properties of the valve, arising from the predominantly circumferential alignment of collagen fibres, is accounted for in the form of transverse isotropy. The rate dependency of the valve's mechanical behaviour is considered to stem from the viscous (η) dissipative effects of the AV matrix, and is incorporated as an explicit function of the deformation rate (λ˙). Model (material) parameters were determined from uniaxial tensile deformation tests of porcine AV specimens at various deformation rates, by fitting the model to each experimental dataset. It is shown that the model provides an excellent fit to the experimental data across all different rates and satisfies the condition of strict local convexity. Based on the fitting results, a nonlinear relationship between η and λ˙ is established, highlighting a ‘shear-thinning’ behaviour for the AV with increase in the deformation rate. Using the model and these outcomes, the stress–deformation curves of the AV tissue under physiological deformation rates in both the circumferential and radial directions are predicted and presented. To verify the predictive capabilities of the model, the stress–deformation curves of AV specimens at an intermediate deformation rate were estimated and validated against the experimental data at that rate, showing an excellent agreement. While the model is primarily developed for application to the AV, it may be applied without the loss of generality to other collagenous soft tissues possessing a similar structure, with a single preferred direction of embedded collagen fibres.
机译:开发了一种新的各向异性粘弹性模型,用于主动脉瓣(AV)。由胶原纤维的主要圆周排列引起的阀机械性能的方向依赖性以横向各向同性的形式解释。阀门机械性能的速率相关性被认为是由AV矩阵的粘性(η)耗散效应引起的,并作为变形速率的显式函数并入( λ ˙ < / math>)。通过将模型拟合到每个实验数据集,从猪AV标本在各种变形速率下的单轴拉伸变形试验中确定模型(材料)参数。结果表明,该模型可以很好地拟合所有速率下的实验数据,并满足严格的局部凸度条件。根据拟合结果,η和 <移动者重音=建立了“ true“> λ ˙ ,突出了随着变形率增加,AV的“剪切变稀”行为。使用该模型和这些结果,可以预测并显示在生理变形速率下在圆周和径向方向上的房室组织的应力-变形曲线。为了验证模型的预测能力,估计了中等变形速率的AV样品的应力-变形曲线,并针对该速率的实验数据进行了验证,这表明了极好的一致性。虽然该模型主要是为应用于AV而开发的,但可以在不失去对具有相似结构,具有单个优先胶原蛋白包埋方向的其他具有相似结构的胶原软组织的普遍性的情况下进行应用。

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