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用于骨组织工程的非均相多孔支架的内部流场分析。

Internal flow field analysis of heterogeneous porous scaffold for bone tissue engineering.

机构信息

School of Mechanical Engineering, Yanshan University, Qinhuangdao, China.

Aviation Key Laboratory of Science and Technology on Generic Technology of Aviation Self-Lubricating Spherical Plain Bearing, Yanshan University, Qinhuangdao, China.

出版信息

Comput Methods Biomech Biomed Engin. 2023 May;26(7):807-819. doi: 10.1080/10255842.2022.2089025. Epub 2022 Jun 20.

Abstract

The internal pore structure of the porous scaffold for bone tissue engineering and the pressure and velocity distributions of its flow field affect the attachment, proliferation and differentiation of osteoblasts. The permeability of the porous scaffold determines its ability to transport cellular nutrients and metabolites. Therefore, studying the fluid flow characteristics of the porous scaffold plays a vital role in its biological applications. Heterogeneous porous scaffolds (HPS) with irregular internal pore structure have more bionic characteristics of natural structure than uniform porous scaffolds with regular internal pore structure. In order to comprehensively grasp the biological properties of HPS, this article designed HPS with different porosities based on the Voronoi generation method and random theory, and then used computational fluid dynamics (CFD)software to conduct fluid flow simulations. The velocity and pressure distribution rules of the internal flow field of HPS with different porosities were obtained by CFD simulation analysis, and the relationship between the porosity and the distribution rules was studied. Furthermore, the permeabilities of HPS with different porosities were calculated based on Darcy's law, and the influence rule of porosity on the permeability was obtained.

摘要

用于骨组织工程的多孔支架的内部孔隙结构及其流场的压力和速度分布会影响成骨细胞的附着、增殖和分化。多孔支架的渗透性决定了其运输细胞营养物质和代谢物的能力。因此,研究多孔支架的流体流动特性对于其生物应用至关重要。具有不规则内部孔隙结构的非均匀多孔支架(HPS)比具有规则内部孔隙结构的均匀多孔支架具有更多的天然结构仿生特性。为了全面掌握 HPS 的生物学特性,本文基于 Voronoi 生成方法和随机理论设计了具有不同孔隙率的 HPS,然后使用计算流体动力学(CFD)软件对其内部流场的流体流动进行模拟。通过 CFD 模拟分析得到了不同孔隙率 HPS 内部流场的速度和压力分布规律,并研究了孔隙率与分布规律之间的关系。此外,还根据达西定律计算了具有不同孔隙率的 HPS 的渗透率,并得出了孔隙率对渗透率的影响规律。

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