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Schwarz Meets Schwann: Design and Fabrication of Biomorphic Tissue Engineering Scaffolds

机译:Schwarz与Schwann会面:生物形态组织工程支架的设计和制造

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摘要

Tissue engineering is a discipline at the leading edge of the field of computer assisted intervention. This multidisciplinary engineering science is based on the notion of design and fabrication of scaffolds- porous, three-dimensional "trellis-like" biomimetic structures that, on implantation, provide a viable environment to recuperate and regenerate damaged cells. Existing CAD-based approaches produce porous labyrinths with contra-naturam straight edges. The biomorphic geometry that mimics the secundam-naturam substrate would be one that is continuous through all space, partitioned into two not-necessarily-equal sub-spaces by a non-intersecting, two-sided surface. Minimal surfaces are ideal to describe such a space. We present results on the premier attempt in computer controlled fabrication and mechanical characterization of Triply Periodic Minimal Surfaces [TPMS]. This initiative is a significant step to link Schwann's 1838 cell theory with Schwarz's discovery of TPMS in 1865 to fabricate the previously elusive optimal biomorphic tissue analogs.
机译:组织工程学是计算机辅助干预领域的前沿学科。这种多学科的工程科学是基于支架和多孔的三维“网格状”仿生结构的设计和制造的概念,这些结构在植入时可提供一个可行的环境来恢复和再生受损的细胞。现有的基于CAD的方法会产生带有反自然直线边缘的多孔迷宫。模仿secundam-naturam底物的生物形态几何学将是一种在所有空间中都连续的几何形状,并通过不相交的两侧表面划分为两个不必要的子空间。最小的表面非常适合描述这种空间。我们提出了在计算机控制的制造和三重周期最小表面[TPMS]的机械表征的主要尝试中的结果。这一举措是将施万恩(Schwann)的1838细胞理论与施瓦茨(Schwarz)在1865年发现的TPMS联系起来以制造先前难以捉摸的最佳生物形态组织类似物的重要一步。

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