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The consolidation behavior of silk hydrogels.

机译:丝水凝胶的整合行为。

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Hydrogels have mechanical properties and structural features that are similar to load-bearing soft tissues including intervertebral disc and articular cartilage, and can be implanted for tissue restoration or for local release of therapeutic factors. To help predict their performance, mechanical characterization and mathematical modeling are the available methods for use in tissue engineering and drug delivery settings. In this study, confined compression creep tests were performed on silk hydrogels, over a range of concentrations, to examine the phenomenological behavior of the gels under a physiological loading scenario. Based on the observed behavior, we show that the time-dependent response can be explained by a consolidation mechanism, and modeled using Biot's poroelasticity theory. Two observations are in strong support of this modeling framework, namely, the excellent numerical agreement between increasing load step creep data and the linear Terzaghi theory, and the similar values obtained from numerical simulations and direct measurements of the permeability coefficient. The higher concentration gels (8% and 12% w/v) clearly show a strain-stiffening response to creep loading with increasing loads, while the lower concentration gel (4% w/v) does not. A nonlinear elastic constitutive formulation is employed to account for the stiffening. Furthermore, an empirical formulation is used to represent the deformation-dependent permeability.
机译:水凝胶具有机械性能和结构特征,其类似于包括椎间盘和关节软骨,包括椎间盘和关节软骨,并且可以植入组织恢复或用于局部释放治疗因素。为了帮助预测其性能,机械表征和数学建模是用于组织工程和药物递送环境的可用方法。在该研究中,在一系列浓度上,对丝水凝胶进行狭窄的压缩蠕变试验,在生理加载场景下检查凝胶的现象学行为。基于观察到的行为,我们表明可以通过合并机制解释时间依赖性响应,并使用BIOS的主动力理论建模。两个观察结果始终处于强大的支持该建模框架,即增加负载步骤蠕变数据和线性Terzaghi理论之间的优异数值协议,以及从数值模拟获得的类似值和渗透系数的直接测量。较高的浓度凝胶(8%和12%w / v)清楚地显示出抗荷载荷的应变加强响应,随着载荷的增加,而较低浓度凝胶(4%w / v)不。使用非线性弹性本构体制剂来解释加强。此外,经验制剂用于表示变形依赖性渗透性。

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