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Layered Fabrication of Branched Networks using Lindenmayer Systems

机译:使用Lindenmayer系统分层制造分支网络

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A current challenge impeding the growth of bone tissue engineering is the lack of functional scaffolds of geometric sizes greater than 10mm due to the inability of cells to survive deep within the scaffold. It is hypothesized that these scaffolds must have an inbuilt nutrient distribution network to sustain the uniform growth of cells. In this paper, we seek to enhance the design and layered fabrication of scaffold internal architecture through the development of Lindenmayer systems, a graphical language based theory to create nutrient delivery networks. The scaffolds are fabricated using the Texas Instruments DLPTM system through UV-photopolymerization to produce polyethylene glycol hydrogels with internal branch structures. The paper will discuss the Lindenmayer system, process planning algorithms, layered fabrication of samples, challenges and future tasks.
机译:妨碍骨组织工程的生长的目前挑战是由于细胞在支架内深入存活而缺乏大于10mm的几何尺寸的功能支架。假设这些支架必须具有内置营养分布网络以维持细胞的均匀生长。在本文中,我们通过开发Lindenmayer系统,基于图形语言的理论来提高脚手架内部架构的设计和分层制造,以创建营养传送网络。使用德克萨斯乐器DLPTM系统通过UV光聚合制造支架,以产生具有内部分支结构的聚乙二醇水凝胶。本文将讨论Lindenmayer系统,过程规划算法,分层制作样本,挑战和未来任务。

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