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软结缔组织中连续分布的胶原纤维重塑。

Remodelling of continuously distributed collagen fibres in soft connective tissues.

作者信息

Driessen N J B, Peters G W M, Huyghe J M, Bouten C V C, Baaijens F P T

机构信息

Department of Biomedical Engineering, Eindhoven University of Technology, W-hoog 4-112, PO Box 513, 5600 MB Eindhoven, The Netherlands.

出版信息

J Biomech. 2003 Aug;36(8):1151-8. doi: 10.1016/s0021-9290(03)00082-4.

Abstract

Extracellular matrix remodelling plays an essential role in tissue engineering of load-bearing structures. The goal of this study is to model changes in collagen fibre content and orientation in soft connective tissues due to mechanical stimuli. A theory is presented describing the mechanical condition within the tissue and accounting for the effects of collagen fibre alignment and changes in fibre content. A fibre orientation tensor is defined to represent the continuous distribution of collagen fibre directions. A constitutive model is introduced to relate the fibre configuration to the macroscopic stress within the material. The constitutive model is extended with a structural parameter, the fibre volume fraction, to account for the amount of fibres present within the material. It is hypothesised that collagen fibre reorientation is induced by macroscopic deformations and the amount of collagen fibres is assumed to increase with the mean fibre stretch. The capabilities of the model are demonstrated by considering remodelling within a biaxially stretched cube. The model is then applied to analyse remodelling within a closed stented aortic heart valve. The computed preferred fibre orientation runs from commissure to commissure and resembles the fibre directions in the native aortic valve.

摘要

细胞外基质重塑在承重结构的组织工程中起着至关重要的作用。本研究的目的是模拟由于机械刺激导致的软结缔组织中胶原纤维含量和取向的变化。提出了一种理论,描述组织内的力学状况,并考虑胶原纤维排列和纤维含量变化的影响。定义了一个纤维取向张量来表示胶原纤维方向的连续分布。引入了一个本构模型,将纤维构型与材料内的宏观应力联系起来。本构模型通过一个结构参数——纤维体积分数进行扩展,以考虑材料内存在的纤维数量。假设胶原纤维的重新取向是由宏观变形引起的,并且假定胶原纤维的数量随着平均纤维拉伸而增加。通过考虑双轴拉伸立方体中的重塑来证明该模型的能力。然后将该模型应用于分析封闭支架主动脉心脏瓣膜内的重塑。计算得到的优选纤维取向从瓣叶联合处到瓣叶联合处,类似于天然主动脉瓣中的纤维方向。

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