首页> 外文会议>International Conference on Computational Methods and Experimental Measurements(CMEM XII); 2005; Malta(MT) >Interrelating creep and stress relaxation of medial collateral ligaments using a fuzzily modeled collagen fibre recruitment
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Interrelating creep and stress relaxation of medial collateral ligaments using a fuzzily modeled collagen fibre recruitment

机译:使用模糊建模的胶原纤维募集使内侧副韧带的蠕变和应力松弛相互关联

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The objective of this work was to model the recruitment mechanism of collagen fibers in ligaments due to creep. Particularly, we were interested in relating the degree of crimp in collagen fibers to the ligament stiffness and profiling the creep behavior in a three dimensional model. The fibre recruitment mechanism is modelled as a multi-variable adaptive feedback system, where the system adapts to the level of applied stress, by receiving feedback from the total stiffness. Assuming that the recruitment of fibers is related to the degree of waviness of fibers, using fuzzy logic we can allocate a soft degree of collagen fiber participation such that it affects the ligament stiffness during creep. This way we collaborate the effect of all fibers including recruited and non-recruited ones with lesser degree to the final ligament strength to dissipate the energy. This technique enables the prediction of creep behavior from stress-relaxation experiments. In this paper we use experimental data provided by Thornton et al.
机译:这项工作的目的是模拟由于蠕变引起的韧带中胶原纤维的募集机制。特别是,我们对将胶原纤维的卷曲程度与韧带刚度相关联并在三维模型中模拟蠕变行为感兴趣。纤维回收机制建模为多变量自适应反馈系统,其中该系统通过接收来自总刚度的反馈来适应施加的应力水平。假设纤维的募集与纤维的起伏程度有关,使用模糊逻辑我们可以分配软度的胶原纤维参与程度,从而影响蠕变过程中的韧带刚度。通过这种方式,我们可以协同所有纤维(包括新招募和未招募的纤维)的效果,降低最终韧带的强度,以耗散能量。该技术可以从应力松弛实验中预测蠕变行为。在本文中,我们使用Thornton等人提供的实验数据。

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