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How vision governs the collective behaviour of dense cycling pelotons

机译:视觉如何控制密集的自行车果胶的集体行为

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摘要

In densely packed groups demonstrating collective behaviour, such as bird flocks, fish schools or packs of bicycle racers (cycling pelotons), information propagates over a network, with individuals sensing and reacting to stimuli over relatively short space and time scales. What remains elusive is a robust, mechanistic understanding of how sensory system properties affect interactions, information propagation and emergent behaviour. Here, we show through direct observation how the spatio-temporal limits of the human visual sensory system govern local interactions and set the network structure in large, dense collections of cyclists. We found that cyclists align in patterns within a ± 30° arc corresponding to the human near-peripheral visual field, in order to safely accommodate motion perturbations. Furthermore, the group structure changes near the end of the race, suggesting a narrowing of the used field of vision. This change is consistent with established theory in psychology linking increased physical exertion to the decreased field of perception. Our results show how vision, modulated by arousal-dependent neurological effects, sets the local arrangement of cyclists, the mechanisms of interaction and the implicit communication across the group. We furthermore describe information propagation phenomena with an analogous elastic solid mechanics model. We anticipate our mechanistic description will enable a more detailed understanding of the interaction principles for collective behaviour in a variety of animals.
机译:在人群密集的群体中表现出集体的行为,例如鸟群,鱼群或成群的自行车赛车手(自行车果胶),信息通过网络传播,个体在相对较短的时空范围内感知并响应刺激。仍然难以理解的是,对感觉系统特性如何影响相互作用,信息传播和紧急行为的机制的理解。在这里,我们通过直接观察展示了人类视觉感觉系统的时空限制如何控制局部交互作用,并在庞大而密集的自行车手集合中设置了网络结构。我们发现,为了安全地适应运动的扰动,骑自行车的人在与人的近周边视野相对应的±30°弧内的模式中对齐。此外,小组结构在比赛快要结束时发生变化,这表明使用视野变窄。这种变化与将增加的体力消耗和减少的感知领域联系在一起的心理学理论相一致。我们的研究结果表明,视觉是如何受到依赖于唤醒的神经系统影响而调节的,从而决定了骑车人的局部排列,相互作用的机制以及整个群体的隐性交流。我们还用类似的弹性固体力学模型描述信息传播现象。我们期望我们的机械描述将使您能够更详细地了解各种动物的集体行为的相互作用原理。

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