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首页> 外文期刊>Journal of biomechanical engineering. >A growth mixture theory for cartilage with application to growth-related experiments on cartilage explants.
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A growth mixture theory for cartilage with application to growth-related experiments on cartilage explants.

机译:软骨生长混合物理论在软骨外植体生长相关实验中的应用。

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In this paper, we present a growth mixture model for cartilage. The main features of this model are illustrated in a simple equilibrium boundary-value problem that is chosen to illustrate how a mechanical theory of cartilage growth may be applied to growth-related experiments on cartilage explants. The cartilage growth mixture model describes the independent growth of the proteoglycan and collagen constituents due to volumetric mass deposition, which leads to the remodeling of the composition and the mechanical properties of the solid matrix. The model developed here also describes how the material constants of the collagen constituent depend on a scalar parameter that may change over time (e.g., crosslink density); this leads to a remodeling of the structural and mechanical properties of the collagen constituent. The equilibrium boundary-value problem that describes the changes observed in cartilage explants harvested at different stages of a growth or a degenerative process is formulated. This boundary-value problem is solved using existing experimental data for developing bovine cartilage explants harvested at three developmental stages. The solution of the boundary-value problem in conjunction with existing experimental data suggest the types of experimental studies that need to be conducted in the future to determine model parameters and to further refine the model.
机译:在本文中,我们提出了软骨的生长混合物模型。该模型的主要特征在一个简单的平衡边值问题中得以说明,该问题被选择来说明如何将软骨生长的力学理论应用于与软骨外植体生长相关的实验。软骨生长混合物模型描述了由于体积质量沉积而导致的蛋白聚糖和胶原蛋白成分的独立生长,这导致了组合物的重塑和固体基质的机械性能。这里开发的模型还描述了胶原蛋白成分的材料常数如何取决于可能随时间变化的标量参数(例如,交联密度);这导致胶原成分的结构和机械性能的重塑。提出了平衡边值问题,该问题描述了在生长或退化过程的不同阶段收获的软骨外植体中观察到的变化。使用现有的实验数据解决了这一边值问题,该实验数据用于开发在三个发育阶段收获的牛软骨外植体。边值问题的解决方案与现有的实验数据相结合,提出了将来需要进行的实验研究类型,以确定模型参数并进一步完善模型。

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