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Delaunay Lofts: A biologically inspired approach for modeling space filling modular structures

机译:DELAUNAIL LOFTS:一种用于建模空间填充模块化结构的生物启发方法

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In this paper, we present a simple and intuitive approach for designing space filling tiles in 3D space. Our approach is inspired by "scutoids" - shapes that were recently reported to occur in epithelial cells due to topological changes between the extremal (apical and basal) surfaces of epithelia. Drawing from this discovery, we develop the theoretical and computational foundations leading to a generalized procedure for generating Delaunay Lofts a new class of scutoid-like shapes. Given two extremal surfaces, both with Delaunay diagrams, Delaunay Lofts are shapes that result from Voronoi tessellation of all intermediate surfaces along the curves joining the vertices of Delaunay diagrams that defines the extremal tessellations. This, combined with the use of wallpaper symmetries allows for intuitive design of complex space filling regular and semi-regular tilings in 3D space. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在本文中,我们提出了一种简单而直观地设计3D空间空间填充瓷砖的方法。我们的方法受到最近据报道的“Scuroids” - 由于上皮细胞的极端(顶端和基础)表面之间的拓扑变化而发生的上皮细胞的形状。从这一发现中绘制,我们开发了理论和计算基础,导致通用程序,用于生成Delaunay Lofts一类新的鳞状形状。考虑到两个极端表面,既有德拉尼亚图,德拉尼亚阁楼都是沿着加入限定极值曲线细分的曲线的曲线的曲线的VORONOI曲面细分导致所有中间表面的形状。这将与壁纸对称的使用相结合允许在3D空间中的复杂空间填充常规和半规则划线的直观设计。 (c)2019 Elsevier Ltd.保留所有权利。

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