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From the Cover: Interaction ruling animal collective behavior depends on topological rather than metric distance: Evidence from a field study

机译:从封面开始:交互作用决定了动物的集体行为取决于拓扑而不是度量距离:来自现场研究的证据

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摘要

Numerical models indicate that collective animal behavior may emerge from simple local rules of interaction among the individuals. However, very little is known about the nature of such interaction, so that models and theories mostly rely on aprioristic assumptions. By reconstructing the three-dimensional positions of individual birds in airborne flocks of a few thousand members, we show that the interaction does not depend on the metric distance, as most current models and theories assume, but rather on the topological distance. In fact, we discovered that each bird interacts on average with a fixed number of neighbors (six to seven), rather than with all neighbors within a fixed metric distance. We argue that a topological interaction is indispensable to maintain a flock's cohesion against the large density changes caused by external perturbations, typically predation. We support this hypothesis by numerical simulations, showing that a topological interaction grants significantly higher cohesion of the aggregation compared with a standard metric one.
机译:数值模型表明,集体动物的行为可能来自个体之间简单的局部相互作用规则。但是,对于这种交互的性质了解甚少,因此模型和理论大多依赖先验假设。通过重构几千只空降鸡群中个体鸟类的三维位置,我们表明相互作用并不像大多数当前模型和理论所假设的那样取决于度量距离,而是取决于拓扑距离。实际上,我们发现每只鸟平均与固定数量的邻居(六到七只)互动,而不是与固定距离范围内的所有邻居互动。我们认为,拓扑相互作用对于维持羊群的凝聚力是不可或缺的,以抵抗由于外界干扰(通常是掠食)而引起的大密度变化。我们通过数值模拟来支持这一假设,表明与标准度量标准相比,拓扑交互作用可显着提高聚合的凝聚力。

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