首页> 外文会议>ASME summer bioengineering conference;SBC2010 >A NOVEL APPROACH TOWARDS MODELING THE COLLAGEN FIBRIL NETWORK FOR USE IN NONLINEAR ANISOTROPIC POLYCONVEX MIXTURE MODELS OF ARTICULAR CARTILAGE
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A NOVEL APPROACH TOWARDS MODELING THE COLLAGEN FIBRIL NETWORK FOR USE IN NONLINEAR ANISOTROPIC POLYCONVEX MIXTURE MODELS OF ARTICULAR CARTILAGE

机译:建模胶原纤维网络的新方法,用于关节软骨的非线性各向异性多凸混合模型

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摘要

Despite distinct mechanical functions, biological soft tissues have a common microstmcture in which a ground matrix is reinforced by a collagen (COL) fibril network. The highly anisotropic, heterogeneous, and asymmetric material properties caused by the microstructural nature of the COL fibril network suggest the importance, as well as the challenges, of accurately modeling soft tissue biomechanics. For soft fibrous tissues with multiple constituents, mathematical distribution functions have represented dispersed and continuous (i.e. non-discrete) fibrils oriented in all directions depending on the type of (and anatomical location in) the tissue under investigation [1-2]. These types of continuous fibril models have been used recently for articular cartilage [3-5]. The strain energy of the COL fibril network is calculated based on the response of individual fibrils in tension in different directions and integrated over a unit sphere at a material point. The specific aims of the current study were to: 1. introduce a novel approach to modeling a continuous distribution of COL fibrils in soft tissues; 2. develop a strain energy function for the COL network based on the proposed distribution function of COL fibrils; 3. derive the stress and material elasticity tensors for the COL network that may be "pre-stressed" in a stress-free natural configuration of the tissue; 4. propose a special model that may be appropriate for immature tissue and establish its suitability for use in a polyconvex tissue strain energy function.
机译:尽管具有独特的机械功能,但生物软组织仍具有常见的微观结构,其中研磨基质通过胶原(COL)纤维网络增强。由COL原纤维网络的微观结构性质引起的高度各向异性,非均质和不对称的材料特性表明,精确建模软组织生物力学的重要性和挑战。对于具有多种成分的软纤维组织,数学分布函数表示了分散的,连续的(即非离散的)原纤维,该纤维在所有方向上均取决于所研究组织的类型(以及解剖位置)[1-2]。这些类型的连续原纤维模型最近已用于关节软骨[3-5]。 COL原纤维网络的应变能是基于各个原纤维在不同方向上的张力响应来计算的,并在材料点的单位球体上积分。当前研究的具体目的是:1.引入一种新颖的方法来模拟软组织中COL原纤维的连续分布; 2.根据建议的COL原纤维分布函数,为COL网络开发应变能函数; 3.推导可在组织无应力的自然形态中“预应力”的COL网络的应力和材料弹性张量; 4.提出一个可能适合于未成熟组织的特殊模型,并确定其适用于多凸组织应变能函数。

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  • 来源
  • 会议地点 Naples FL(US);Naples FL(US)
  • 作者单位

    Mechanical Engineering DepartmentrnCalifornia Polytechnic State UniversityrnSan Luis Obispo, CA, United States;

    Department of Structural Engine Politecnico di Milano Milano, Italy;

    Department of BioengineeringrnUniversity of California, San Diego,rnLa Jolla, CA, United States;

    Mechanical Engineering DepartmentrnCalifornia Polytechnic State UniversityrnSan Luis Obispo, CA, United States;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体工程学;
  • 关键词

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