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Topological object types for morphodynamic modeling languages

机译:形态动力学建模语言的拓扑对象类型

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We survey useful ingredients for a new class of mathematical process-modeling languages aimed at spatial and developmental biology. Existing modeling languages for computational systems biology do not fully address the problems of spatial modeling that arise in morphodynamics (the local dynamics of form) and its applications to biological development. We seek to extend the operator algebra semantics approach from our previous “Dynamical Grammars” modeling language, whose most spatial object type is the labelled graph, to encompass more flexible topological objects. Taking clues from current developments in 3D meshing and from topological modeling for biology, illustrated by a plant tissue example, we seek language support for the approximation of low-dimensional CW complexes (which are nontrivial topological spaces, with cardinality of the continuum) and dynamic fields thereon, by finite labelled abstract complexes. Some of the proposed types would be computationally demanding, without further restriction. Restrictions and control of these approximations can be specified by use of “metricated” types. Minimally, such approximations should permit the accurate simulation of spatial diffusion processes.
机译:我们调查了针对空间和发育生物学的新型数学过程建模语言的有用成分。用于计算系统生物学的现有建模语言不能完全解决形态动力学(形式的局部动力学)及其在生物学发展中的应用所引起的空间建模问题。我们试图从以前的“动态语法”建模语言(其最大的空间对象类型为带标签的图)扩展算子代数语义方法,以涵盖更灵活的拓扑对象。借鉴3D网格划分的最新进展以及生物学的拓扑建模(以植物组织为例),我们寻求语言支持低维CW复合体(非平凡的拓扑空间,具有连续基数)和动态场,由有限标记的抽象复合体组成。某些提议的类型将在计算上有需求,而没有进一步的限制。这些近似值的限制和控制可以通过使用“度量”类型来指定。最小程度地,这样的近似应允许对空间扩散过程进行精确的模拟。

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