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A Theoretical Model for the Prediction of the Porosity of Warp Knitted Scaffolds for Vascular Applications

机译:用于血管应用的经编编织支架孔隙率预测的理论模型

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Porosity is one of the important structural parameters for vascular scaffolds. The ideal porosity should permit free transport of nutrients and wasted products across the scaffold. Many methods, such as gravimetric method, mercury intrusion method and SEM method have widely been used to predict the porosity. However, theoretical models used for predicting the porosity of a scaffold produced from textile structure are still lacked. Warp knitted structure is a promising structure for the fabrication of scaffolds. The aim of this work is to establish a novel theoretical model which can predict the porosity of such scaffold. The results calculated from the model for the scaffolds knitted on a small circular warp knitting machine with the biodegradable material PGLA were compared with these calculated from the gravity model results and the experimental results of the modified method of weight. The results have shown that the present model can effectively predict the porosity of a warp knitted scaffold.
机译:孔隙率是血管支架的重要结构参数之一。理想的孔隙率应允许营养物质和浪费的产品在支架上自由运输。重力法,压汞法和扫描电镜法等许多方法已被广泛用于预测孔隙度。然而,仍然缺乏用于预测由纺织品结构产生的支架的孔隙率的理论模型。经编结构是用于制造支架的有前途的结构。这项工作的目的是建立一个可以预测这种支架孔隙率的新颖理论模型。将在具有可生物降解材料PGLA的小型圆形经编机上编织的脚手架的模型计算出的结果与重力模型结果和改进的称重方法的实验结果进行了比较。结果表明,该模型可以有效地预测经编编织支架的孔隙率。

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