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Modeling of bone adaptative behavior based on cells activities

机译:基于细胞活动的骨骼适应行为建模

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摘要

Bone remodeling occurs in an adult's skeleton to adapt its architecture to external loadings. This involves bone resorption by osteoclasts cells followed by formation of new bone by osteoblasts cells. During bone remodeling, osteoclasts and osteoblasts interact with each other by expressing autocrine and paracrine factors that regulate cells' population. Therefore, changes in bone density depend on the amount of each acting cell population. The aim of this paper is to propose a model for the bone remodeling process, which takes into account the opposite activity of both types of cells. For this purpose, a system of differential equations, proposed by Komarova et al. (Bone 33:206-215, 2003), is introduced to describe bone cell interactions using parameters which characterize the autocrine and paracrine factors. Such equations allow us to determine how the autocrine and paracrine factors vary in response to an external stimulus. It is assumed that an equilibrium state can be obtained for values of stimulus near to some reference quantity. Far from this value, unbalanced activity of osteoblasts and osteoclasts is observed, which leads to bone apposition or resorption. The proposed model has been implemented into the finite element software ABAQUS to analyze the qualitative response of a bone structure when subjected to certain mechanical loadings. Obtained results are satisfactory and in accordance with the expected bone remodeling behavior.
机译:骨骼重塑发生在成年人的骨骼中,以使其结构适应外部负荷。这涉及破骨细胞吸收骨,然后由成骨细胞形成新骨。在骨重塑过程中,破骨细胞和成骨细胞通过表达调节细胞数量的自分泌和旁分泌因子而相互作用。因此,骨密度的变化取决于每个起作用的细胞群的数量。本文的目的是提出一种用于骨骼重塑过程的模型,该模型考虑了两种类型细胞的相反活性。为此,Komarova等人提出了一个微分方程组。 (Bone 33:206-215,2003)被引入以使用表征自分泌和旁分泌因子的参数来描述骨细胞相互作用。这样的方程式使我们能够确定自分泌和旁分泌因子如何响应外部刺激而变化。假设可以为接近某个参考量的刺激值获得平衡状态。远离该值,观察到成骨细胞和破骨细胞的活性不平衡,这导致骨并置或吸收。所提出的模型已被实施到有限元软件ABAQUS中,以分析在承受某些机械载荷时骨骼结构的定性响应。获得的结果令人满意,并且符合预期的骨骼重塑行为。

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