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首页> 外文期刊>Behavioral Ecology and Sociobiology >Group structure in locust migratory bands.
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Group structure in locust migratory bands.

机译:蝗虫迁徙带的群体结构。

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摘要

Locust swarms are spectacular and damaging manifestations of animal collective movement. Here, we capture fundamental features of locust mass movement in the field, including a strongly non-linear relationship between collective alignment and density known only from earlier theoretical models and laboratory experiments. Migratory bands had a distinct structure, with a single high-density peak at the front, where collective alignment was high, followed by an exponential decay in density. As predicted by theory, alignment decreased with decreasing density, and fluctuations of movement direction became large until order amongst group members at the back of the band was totally lost. Remarkably, we found that the coordinated movement of migratory bands, which can be several kilometres wide and contain many millions of individuals, results from interactions occurring at a scale of 13.5 cm or less. Our results indicate that locust band structure and dynamics differ markedly from what is known (or assumed) about other large moving groups such as fish schools or bird flocks, yet they still conform to key general predictions made by collective movement models that explain how billions of individuals can align using local interactions.
机译:蝗虫群是动物集体运动的壮观和破坏性表现。在这里,我们捕获了蝗虫在田间运动的基本特征,包括集体对准和密度之间的强烈非线性关系,这种关系只有早期的理论模型和实验室实验才知道。迁移带具有独特的结构,在前部有一个高密度峰,那里的集体排列很高,然后密度呈指数衰减。如理论所预测,随着密度的降低,对准降低,并且运动方向的波动变大,直到乐队后面的组成员之间的秩序完全消失。值得注意的是,我们发现迁移带的协调运动可能是几公里宽,包含数以百万计的个体,这是由于相互作用发生在13.5厘米或更小的范围内。我们的结果表明,蝗虫的带状结构和动力学与已知的其他大型活动群体(例如鱼群或鸟类)明显不同(或假定),但它们仍符合集体运动模型做出的关键一般预测,这​​些预测解释了数十亿人个人可以使用本地互动进行调整。

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