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Micromechanical Modeling Study of Mechanical Inhibition of Enzymatic Degradation of Collagen Tissues

机译:机械抑制胶原组织酶降解的微力学模型研究

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摘要

This study investigates how the collagen fiber structure influences the enzymatic degradation of collagen tissues. We developed a micromechanical model of a fibrous collagen tissue undergoing enzymatic degradation based on two central hypotheses. The collagen fibers are crimped in the undeformed configuration. Enzymatic degradation is an energy activated process and the activation energy is increased by the axial strain energy density of the fiber. We determined the intrinsic degradation rate and characteristic energy for mechanical inhibition from fibril-level degradation experiments and applied the parameters to predict the effect of the crimped fiber structure and fiber properties on the degradation of bovine cornea and pericardium tissues under controlled tension. We then applied the model to examine the effect of the tissue stress state on the rate of tissue degradation and the anisotropic fiber structures that developed from enzymatic degradation.
机译:这项研究调查胶原纤维结构如何影响胶原组织的酶促降解。我们基于两个中心假设,开发了进行酶促降解的纤维状胶原组织的微机械模型。胶原纤维以未变形的形状卷曲。酶促降解是能量活化的过程,并且活化能通过纤维的轴向应变能密度而增加。我们从原纤维水平的降解实验中确定了机械降解的内在降解速率和特征能,并应用这些参数预测了卷曲纤维结构和纤维特性对在受控张力下牛角膜和心包组织降解的影响。然后,我们应用该模型检查组织应力状态对组织降解速率和由酶促降解形成的各向异性纤维结构的影响。

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