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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Computational methodology to determine fluid related parameters of non regular three-dimensional scaffolds
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Computational methodology to determine fluid related parameters of non regular three-dimensional scaffolds

机译:确定非规则三维脚手架流体相关参数的计算方法

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摘要

The application of three-dimensional (3D) biomaterials to facilitate the adhesion, proliferation, and differentiation of cells has been widely studied for tissue engineering purposes. The fabrication methods used to improve the mechanical response of the scaffold produce complex and non regular structures. Apart from the mechanical aspect, the fluid behavior in the inner part of the scaffold should also be considered. Parameters such as permeability (k) or wall shear stress (WSS) are important aspects in the provision of nutrients, the removal of metabolic waste products or the mechanically-induced differentiation of cells attached in the trabecular network of the scaffolds. Experimental measurements of these parameters are not available in all labs. However, fluid parameters should be known prior to other types of experiments. The present work compares an experimental study with a computational fluid dynamics (CFD) methodology to determine the related fluid parameters (k and WSS) of complex non regular poly(l-lactic acid) scaffolds based only on the treatment of microphotographic images obtained with a microCT (μCT). The CFD analysis shows similar tendencies and results with low relative difference compared to those of the experimental study, for high flow rates. For low flow rates the accuracy of this prediction reduces. The correlation between the computational and experimental results validates the robustness of the proposed methodology.
机译:出于组织工程目的,已经广泛研究了三维(3D)生物材料在促进细胞粘附,增殖和分化中的应用。用于改善支架的机械响应的制造方法产生复杂且不规则的结构。除了机械方面,还应考虑支架内部的流体行为。诸如渗透率(k)或壁切应力(WSS)之类的参数在提供营养,代谢废物的去除或附着在支架小梁网络中的细胞的机械诱导分化方面是重要方面。这些参数的实验测量并非在所有实验室中都可用。但是,在进行其他类型的实验之前,应先了解流体参数。本工作将实验研究与计算流体动力学(CFD)方法进行了比较,以确定仅基于用C-射线法获得的显微照相图像的处理,才能确定复杂的非常规聚(L-乳酸)支架的相关流体参数(k和WSS)。 microCT(μCT)。对于高流速,CFD分析显示出与实验研究相比相似的趋势和结果,相对差异较小。对于低流速,此预测的准确性降低。计算结果与实验结果之间的相关性验证了所提出方法的鲁棒性。

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