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骨细胞形状对受载骨内流体流动和流体切应力的影响。

Effects of Osteocyte Shape on Fluid Flow and Fluid Shear Stress of the Loaded Bone.

机构信息

College of Biomedical Engineering, Jilin Medical University, Jilin, Jilin, China.

College of Biomedical Engineering, Taiyuan University of Technology, Taiyuan, Shanxi Province, China.

出版信息

Biomed Res Int. 2022 May 30;2022:3935803. doi: 10.1155/2022/3935803. eCollection 2022.

Abstract

This study was conducted to better understand the specific behavior of the intraosseous fluid flow. We calculated the number and distribution of bone canaliculi around the osteocytes based on the varying shapes of osteocytes. We then used these calculated parameters and other bone microstructure data to estimate the anisotropy permeability of the lacunar-canalicular network. Poroelastic finite element models of the osteon were established, and the influence of the osteocyte shape on the fluid flow properties of osteons under an axial displacement load was analyzed. Two types of boundary conditions (BC) that might occur in physiological environments were considered on the cement line of the osteon. BC1 allows free fluid passage from the outer elastic restraint boundary, and BC2 is impermeable and allows no free fluid passage from outer displacement constrained boundary. They both have the same inner boundary conditions that allow fluid to pass through. Changes in the osteocyte shape altered the maximum value of pressure gradient (PG), pore pressure (PP), fluid velocity (FV), and fluid shear stress (FSS) relative to the reference model (spherical osteocytes). The maximum PG, PP, FV, and FSS in BC2 were nearly 100% larger than those in BC1, respectively. It is found that the BC1 was closer to the real physiological environment. The fluid flow along different directions in the elongated osteocyte model was more evident than that in other models, which may have been due to the large difference in permeability along different directions. Changes in osteocyte shape significantly affect the degrees of anisotropy of fluid flow and porous media of the osteon. The model presented in this study can accurately quantify fluid flow in the lacunar-canalicular network.

摘要

本研究旨在更好地了解骨内流体流动的具体行为。我们根据骨细胞的不同形状计算了骨细胞周围骨小管的数量和分布。然后,我们使用这些计算参数和其他骨微观结构数据来估计骨陷窝-小管网络的各向异性渗透性。建立了骨单位的多孔弹性有限元模型,并分析了轴向位移载荷下骨细胞形状对骨单位流体流动特性的影响。考虑了在骨单位的水泥线处可能发生的两种生理环境边界条件(BC)。BC1 允许从外部弹性约束边界自由通过流体,BC2 是不可渗透的,不允许从外部位移约束边界自由通过流体。它们都具有相同的内部边界条件,允许流体通过。骨细胞形状的变化改变了压力梯度(PG)、孔隙压力(PP)、流体速度(FV)和流体剪切应力(FSS)的最大值,相对于参考模型(球形骨细胞)。BC2 中的最大 PG、PP、FV 和 FSS 分别比 BC1 中的大近 100%。结果发现,BC1 更接近真实的生理环境。在伸长的骨细胞模型中,流体沿不同方向的流动比在其他模型中更为明显,这可能是由于不同方向渗透性的巨大差异所致。骨细胞形状的变化显著影响骨单位流体流动和多孔介质的各向异性程度。本研究提出的模型可以准确地量化骨陷窝-小管网络中的流体流动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8632/9170394/544bc30bb03d/BMRI2022-3935803.001.jpg

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