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Quasi-static deformations of biological soft tissue

机译:生物软组织的准静态变形

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摘要

Quasi-static motions are motions for which inertial effects can be neglected, to the first order of approximation. It is crucial to be able to identify the quasi-static regime in order to efficiently formulate constitutive models from standard material characterization test data. A simple non-dimensionalization of the equations of motion for continuous bodies yields non-dimensional parameters which indicate the balance between inertial and material effects. It will be shown that these parameters depend on whether the characterization test is strain- or stress-controlled and on the constitutive model assumed. A rigorous definition of quasi-static behaviour for both strain- and stress-controlled experiments is obtained for elastic solids and a simple form of a viscoelastic solid. Adding a rate dependence to a constitutive model introduces internal time-scales and this complicates the identification of the quasi-static regime. This is especially relevant for biological soft tissue as this tissue is typically modelled as being a non-linearly viscoelastic solid. The results obtained here are applied to some problems in cardiac mechanics and to data obtained from simple shear experiments on porcine brain tissue at high strain rates.
机译:准静态运动是可以忽略惯性影响到近似一阶的运动。至关重要的是,能够识别准静态状态,以便根据标准材料表征测试数据有效地构造本构模型。连续物体的运动方程的简单无量纲化产生了无量纲参数,这些参数指示了惯性效应和材料效应之间的平衡。将显示这些参数取决于表征测试是应变控制还是应力控制以及假设的本构模型。对于弹性固体和粘弹性固体的简单形式,获得了对应变和应力控制实验的准静态行为的严格定义。在本构模型上增加速率依赖性会引入内部时间尺度,这使准静态状态的识别变得复杂。这对于生物软组织尤其重要,因为该组织通常被建模为非线性粘弹性固体。此处获得的结果适用于心脏力学中的一些问题,还适用于在高应变率下对猪脑组织进行简单剪切实验获得的数据。

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