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A New Constitutive Model for Hydration-Dependent Mechanical Properties in Biological Soft Tissues and Hydrogels

机译:生物软组织和水凝胶中水合作用力学性质的本构模型

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摘要

It is challenging to noninvasively determine the mechanical properties of biological soft tissues in vivo. In this study, based on the biphasic theory and the transport models, a new constitutive model for hydration-dependent mechanical properties in hydrated soft materials was derived: HA = A(1-ϕf)nf)2-n/(2-ϕf)2, where HA = λ + 2μ is the aggregate modulus, ϕf is the volume fraction of fluid (i.e., hydration), A and n (>2) are two parameters related to the transport properties of the biphasic materials. A linear model for hydration-dependent shear modulus in the literature was verified for hydrogels. The effects of tissue hydration on mechanical properties (aggregate modulus and Poisson’s ratio) were investigated. It was found that the value of Poisson’s ratio was very sensitive to the tissue hydration in soft materials with high water content. The predictions of the aggregate modulus and shear modulus for hydrogels by the model compared well with those from experimental results. This study is important for developing new techniques for noninvasively assessing the mechanical properties of biological soft tissues using quantitative MRI methods as well as for designing scaffolds with proper mechanical properties for tissue engineering applications.
机译:非侵入性地确定体内生物软组织的机械性能具有挑战性。在这项研究中,基于双相理论和输运模型,得出了一种新的水化软材料中水合依赖性机械本构模型:HA = A(1-ϕ f n (ϕ f 2-n /(2-ϕ f 2 ,其中HA =λ+2μ是总模量,ϕ f 是流体的体积分数(即水合),A和 n (> 2)是与两相材料的传输特性。验证了水凝胶中水合依赖性剪切模量的线性模型。研究了组织水合作用对机械性能(聚集模量和泊松比)的影响。发现在具有高含水量的软质材料中,泊松比的值对组织的水合作用非常敏感。该模型对水凝胶的总模量和剪切模量的预测与实验结果相比较。这项研究对于开发使用定量MRI方法无创地评估生物软组织的机械特性的新技术以及设计具有适当机械特性的支架以用于组织工程应用非常重要。

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