论文标题
动物觅食轨迹的可见性图
Visibility graphs of animal foraging trajectories
论文作者
论文摘要
对自旋细胞颗粒的研究是一个快速增长的研究主题,其中生物学启发的运动越来越引起人们的关注。一个相关的例子是社会昆虫的集体运动,其多样性和复杂性为理论抽象提供了肥沃的理由。已经证明,白蚁搜索行为所涉及的集体运动与自相似性,异常扩散和莱维步行一致。在这项工作中,我们使用可见性图(一种将时间序列映射到图形中并通过图形拓扑指标量化的信号复杂性的方法)在社交昆虫觅食从实验中提取的轨迹的背景下。我们的分析表明,当白蚁密度增加时,孤立白蚁观察到的模式在质量上发生变化,而这种变化只能通过干扰效应来解释,这表明由于昆虫之间的非平凡觅食相互作用而产生的集体效应。此外,我们发现这种复杂性的发作对于中间白蚁密度最大化。
The study of self-propelled particles is a fast-growing research topic where biologically inspired movement is increasingly becoming of much interest. A relevant example is the collective motion of social insects, whose variety and complexity offer fertile grounds for theoretical abstractions. It has been demonstrated that the collective motion involved in the searching behavior of termites is consistent with self-similarity, anomalous diffusion and Lévy walks. In this work, we use visibility graphs -- a method that maps time series into graphs and quantifies the signal complexity via graph topological metrics -- in the context of social insects foraging trajectories extracted from experiments. Our analysis indicates that the patterns observed for isolated termites change qualitatively when the termite density is increased, and such change cannot be explained by jamming effects only, pointing to collective effects emerging due to non-trivial foraging interactions between insects as the cause. Moreover, we find that such an onset of complexity is maximized for intermediate termite densities.