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Initiation and spread of escape waves within animal groups

机译:逃逸波在动物群中的发起和传播

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摘要

The exceptional reactivity of animal collectives to predatory attacks is thought to be owing to rapid, but local, transfer of information between group members. These groups turn together in unison and produce escape waves. However, it is not clear how escape waves are created from local interactions, nor is it understood how these patterns are shaped by natural selection. By startling schools of fish with a simulated attack in an experimental arena, we demonstrate that changes in the direction and speed by a small percentage of individuals that detect the danger initiate an escape wave. This escape wave consists of a densely packed band of individuals that causes other school members to change direction. In the majority of cases, this wave passes through the entire group. We use a simulation model to demonstrate that this mechanism can, through local interactions alone, produce arbitrarily large escape waves. In the model, when we set the group density to that seen in real fish schools, we find that the risk to the members at the edge of the group is roughly equal to the risk of those within the group. Our experiments and modelling results provide a plausible explanation for how escape waves propagate in nature without centralized control.
机译:人们认为动物集体对掠夺性攻击的异常反应是由于群体成员之间信息的快速但局部的传递。这些团体齐头并进,产生逃生波。但是,尚不清楚如何通过局部相互作用产生逃逸波,也不清楚如何通过自然选择来塑造这些模式。通过在实验舞台上对模拟攻击的鱼类群进行惊吓,我们证明了检测危险的一小部分人的方向和速度变化会引发逃生波。逃生波由密集的个人组成,导致其他学校成员改变方向。在大多数情况下,此波会遍及整个组。我们使用一个仿真模型来证明,这种机制仅通过局部相互作用就能产生任意大的逃逸波。在模型中,当我们将群密度设置为真实鱼群中看到的密度时,我们发现对群边缘成员的风险大约等于对群内成员的风险。我们的实验和建模结果为逃生波如何在没有集中控制的情况下自然传播提供了合理的解释。

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