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Self-organizing particle systems

机译:自组织粒子系统

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The self-organization of cells into a living organism is a very intricate process. Under the surface of orchestrating regulatory networks there are physical processes which make the information processing possible, that is required to organize such a multitude of individual entities. We use a quantitative information theoretic approach to assess self-organization of a collective system. In particular, we consider an interacting particle system, that roughly mimics biological cells by exhibiting differential adhesion behavior. Employing techniques related to shape analysis, we show that these systems in most cases exhibit self-organization. Moreover, we consider spatial constraints of interactions, and additionaly show that particle systems can self-organize without the emergence of pattern-like structures. However, we will see that regular pattern-like structures help to overcome limitations of self-organization that are imposed by the spatial structure of interactions.
机译:细胞自组织成活生物体是一个非常复杂的过程。在协调性监管网络的表面之下,存在物理过程使信息处理成为可能,这是组织如此众多的单个实体所必需的。我们使用定量信息理论方法来评估集体系统的自组织。特别地,我们考虑一个相互作用的粒子系统,该系统通过表现出不同的粘附行为大致模拟生物细胞。使用与形状分析相关的技术,我们表明这些系统在大多数情况下均表现出自组织性。此外,我们考虑了相互作用的空间约束,并且另外表明,粒子系统可以自组织,而不会出现类似图案的结构。但是,我们将看到规则的类似模式的结构有助于克服相互作用的空间结构所带来的自组织限制。

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