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Bone remodeling: an improved spatiotemporal mathematical model

机译:骨重塑:改进的时空数学模型

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摘要

Bone remodeling is a key process in vertebrate organisms, since it is responsible for maintaining skeleton's integrity. However, in some pathological conditions, such as osteoporosis or Paget's disease, bone's function becomes compromised. To gain a better understanding about these conditions, bone remodeling has become a determinant subject of research. Remodeling implies resorption of bone by osteoclasts followed by formation of new tissue by osteoblasts. The interaction between these two bone cells is reproduced in this work by extending the bone remodeling model of Ayati et al. (Biol Direct 5:28, 2010. ). Also, for the first time, a discrete numerical method-finite element method (FEM)-is applied to solve the remodeling equations and analyze the results. A single cycle of remodeling is simulated using a two-dimensional bone patch. Results show that the developed mathematical model is able to correlate bone cell dynamics with different phases of the remodeling process, allowing to obtain the transient spatial distribution of bone's apparent density along time. Thus, the presented model reveals itself as a successful approach, producing an accurate temporal-spatial evolution of bone cells during an event of bone remodeling.
机译:骨骼重塑是脊椎动物的关键过程,因为它负责维持骨骼的完整性。但是,在某些病理状况下,例如骨质疏松症或Paget病,骨骼的功能会受损。为了更好地了解这些状况,骨骼重塑已成为研究的决定性课题。重塑意味着破骨细胞吸收骨骼,然后成骨细胞形成新组织。通过扩展Ayati等人的骨骼重塑模型,可以在此工作中重现这两个骨骼细胞之间的相互作用。 (Biol Direct 5:28,2010.)。而且,这是首次采用离散数值方法-有限元方法(FEM)来求解重塑方程并分析结果。使用二维骨膜片可模拟单个重构周期。结果表明,所开发的数学模型能够将骨细胞动力学与重塑过程的不同阶段相关联,从而获得随时间变化的骨骼表观密度的瞬时空间分布。因此,提出的模型将自身展示为一种成功的方法,可以在骨骼重塑的过程中产生骨骼细胞的准确时空演变。

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