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Modeling of porous structures for rapid prototyping of tissue engineering scaffolds

机译:用于组织工程支架快速原型的多孔结构建模

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Rapid prototyping techniques are increasingly used to build porous scaffolds for the regeneration of biological tissues. This paper deals with one of the most critical tasks involved by this option, i.e., the preparation of geometric data for layered fabrication. Compared to other existing approaches, this work aims at both reducing the required effort in interactive modeling and allowing a standard use of commercial prototyping systems without resorting to special treatments. The proposed method adds a porous structure to the geometric model of tissue surface in polygon format. The structure is of the Cartesian type and consists of an interconnected network of rectilinear channels, whose dimensions can be varied according to desired porosity and pore size. The algorithmic procedures needed for the generation of the porous structure have been implemented in a demonstrative software tool. Sample models of scaffolds have been generated and used to build prototype parts by different fabrication processes and systems.
机译:快速原型技术越来越多地用于构建用于生物组织再生的多孔支架。本文涉及此选项涉及的最关键的任务之一,即为分层制造准备几何数据。与其他现有方法相比,这项工作旨在减少交互建模所需的工作量,并允许在不诉诸特殊处理的情况下标准使用商业原型系统。所提出的方法以多边形形式向组织表面的几何模型添加了多孔结构。该结构是笛卡尔型的,由相互连接的直线通道网络组成,其尺寸可以根据所需的孔隙率和孔径而变化。生成多孔结构所需的算法程序已在演示软件工具中实现。脚手架的样品模型已经生成,并通过不同的制造工艺和系统用于构建原型零件。

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