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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Constitutive modeling of crimped collagen fibrils in soft tissues.
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Constitutive modeling of crimped collagen fibrils in soft tissues.

机译:软组织中卷曲胶原蛋白纤维的本构模型。

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摘要

A microstructurally oriented constitutive formulation for the hyperelastic response of crimped collagen fibrils existing in soft connective tissues is proposed. The model is based on observations that collagen fibrils embedded in a soft matrix crimp into a smooth three-dimensional pattern when unloaded. Following ideas presented by Beskos and Jenkins [Beskos, D., Jenkins, J., 1975. A mechanical model for mammalian tendon. ASME Journal of Applied Mechanics 42, 755-758] and Freed and Doehring [Freed, A., Doehring, T., 2005. Elastic model for crimped collagen fibrils. Journal of Biomechanical Engineering 127, 587-593] the collagen fibril crimp is approximated by a cylindrical helix to represent the constitutive behavior of the hierarchical organized substructure of biological tissues at the fibrillar level. The model is derived from the nonlinear axial force-stretch relationship of an extensible helical spring, including the full extension of the spring as a limit case. The geometrically nonlinear solution of the extensible helical spring is carried out by an iterative procedure. The model only requires one material parameter and two geometrical parameters to be determined from experiments. The ability of the proposed model to reproduce the biomechanical response of fibrous tissues is demonstrated for fascicles from rat tail tendons, for porcine cornea strips, and for bovine Achilles tendons.
机译:提出了一种微结构取向的本构配方,用于软结缔组织中存在的卷曲胶原蛋白纤维的超弹性反应。该模型基于以下观察结果:卸载时,嵌入软基质中的胶原蛋白原纤维卷曲成光滑的三维图案。遵循Beskos和Jenkins提出的想法[Beskos,D.,Jenkins,J.,1975。哺乳动物腱的力学模型。 ASME Journal of Applied Mechanics 42,755-758]和Freed and Doehring [Freed,A.,Doehring,T.,2005。卷曲胶原纤维的弹性模型。 Journal of Biomechanical Engineering 127,587-593]胶原纤维的卷曲由圆柱螺旋近似表示,以代表原纤维水平上生物组织的分层组织亚结构的本构行为。该模型是从可伸展螺旋弹簧的非线性轴向力-拉伸关系得出的,包括弹簧的全部伸展作为极限情况。可伸缩螺旋弹簧的几何非线性解是通过迭代过程执行的。该模型仅需要从实验中确定一个材料参数和两个几何参数。对于来自大鼠尾腱的束,猪的角膜条和牛跟腱,证明了所提出的模型再现纤维组织的生物力学响应的能力。

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