首页> 外文会议>ASME summer bioengineering conference;SBC2009 >FINITE ELEMENT MODELING OF ENTANGLED COLLAGEN FIBER GELS WITH RANDOMLY ORIENTED FIBERS
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FINITE ELEMENT MODELING OF ENTANGLED COLLAGEN FIBER GELS WITH RANDOMLY ORIENTED FIBERS

机译:带有随机取向纤维的纠缠胶原纤维的有限元建模

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Collagen is an important structural protein in the human body, and its molecules form structural aggregates at multiple length scales (i.e., microfibrils, fibrils, fibers, and bundles of different sizes) in biological tissues and organs [1]. The mechanical properties of most tissues are dependent on the underlying network of collagen fibers, proteoglycans, and other extracellular matrix components [2]. Similarly, the properties of in vitro tissue analogs, often created from collagen or fibrin gels, are also dependent on the organization of the biopolymers [3]. The overall mechanical response is intrinsically multi-scale and dynamic in both materials. As a result, a satisfactory description of the microstructure is important for exploring the essential physics of the tissue.
机译:胶原蛋白是人体中重要的结构蛋白,其分子在生物组织和器官中以多种长度尺度(即微纤维,原纤维,纤维和不同大小的束)形成结构聚集体[1]。大多数组织的机械性能取决于胶原纤维,蛋白聚糖和其他细胞外基质成分的基本网络[2]。同样,通常由胶原蛋白或纤维蛋白凝胶产生的体外组织类似物的特性也取决于生物聚合物的组织[3]。两种材料的整体机械响应本质上都是多尺度的,并且是动态的。结果,对微结构的令人满意的描述对于探索组织的基本物理学是重要的。

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