Bistability and Switching Behavior in Moving Animal Groups

D. Strömbom, Stephanie Nickerson, Catherine Futterman, A. Difazio, Cameron Costello, K. Tunstrøm
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引用次数: 4

Abstract

Moving animal groups such as schools of fish and flocks of birds frequently switch between different group structures. Standard models of collective motion have been used successfully to explain how stable groups form via local interactions between individuals, but they are typically unable to produce groups that exhibit spontaneous switching. We are only aware of one model, constructed for barred flagtail fish that are known to rely on alignment and attraction to organize their collective motion, that has been shown to generate this type of behavior in 2D (or 3D). Interestingly, another species of fish, golden shiners, do exhibit switching but have been shown to use attraction and repulsion, not alignment, to coordinate themselves in schools. Suggesting that switching may be explained by attraction and repulsion alone, without an alignment interaction. Here we introduce a model based on attraction and repulsion only and show that groups exhibiting switching similar to that observed in experiments with golden shiners emerges. We also establish that switching occur in two boundary-free extensions of the model. Our work suggests that the bistability and switching behavior observed in golden shiners and other moving animal groups may be explained via attractive and repulsive interactions alone.
运动动物群体中的双稳态和切换行为
移动的动物群体,如鱼群和鸟群,经常在不同的群体结构之间切换。集体运动的标准模型已经成功地用来解释稳定的群体是如何通过个体之间的局部相互作用形成的,但它们通常无法产生表现出自发转换的群体。我们只知道一个模型,它是为条纹旗尾鱼构建的,众所周知,条纹旗尾鱼依靠对齐和吸引力来组织它们的集体运动,该模型已被证明可以在2D(或3D)中产生这种类型的行为。有趣的是,另一种鱼,金光鱼,也表现出了转换,但已经被证明是利用吸引力和排斥力,而不是对齐,来协调鱼群。这表明转换可能仅由吸引力和排斥力来解释,而没有对齐相互作用。在这里,我们引入了一个仅基于吸引力和排斥力的模型,并展示了表现出与在金色闪光者实验中观察到的相似的转换的群体。我们还建立了切换发生在模型的两个无边界扩展中。我们的研究表明,在金光动物和其他移动动物群体中观察到的双稳定性和切换行为可能仅通过吸引和排斥相互作用来解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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