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A novel method for investigating the collective behaviour of fish: introducing Robofish'

机译:调查鱼类集体行为的一种新方法:介绍Robofish's

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Collective animal behaviour has attracted much attention recently, but cause-and-effect within interaction sequences has often been difficult to establish. To tackle this problem, we constructed a robotic fish (Robofish') with which three-spined sticklebacks (Gasterosteus aculeatus L.) interact. Robofish is a computer-controlled replica stickleback that can be programmed to move around a tank. First, we demonstrated the functioning of the method: that the sticklebacks interacted with Robofish. We examined two types of interaction: recruitment and leadership. We found that Robofish could recruit a single fish from a refuge and could initiate a turn in singletons and in groups of ten, i.e. act as a leader. We also showed that the influence of Robofish diminished after the first 30 min that fish spent in a new environment. Second, using this method, we investigated the effects of metric and topological inter-individual distance on the influence that Robofish had on the orientation of fish in a shoal of ten. We found that inter-individual interactions during this turn were predominantly mediated by topological, rather than metric, distance. Finally, we discussed the potential of this novel method and the importance of our findings for the study of collective animal behaviour.
机译:集体动物的行为最近引起了人们的广泛关注,但是相互作用序列中的因果关系通常很难确定。为了解决这个问题,我们构造了一种机器人鱼(Robofish'),它与三棘刺背鱼(Gasterosteus aculeatus L.)相互作用。机器人鱼是一种计算机控制的复制刺背鱼,可对其进行编程以使其在鱼缸周围移动。首先,我们演示了该方法的功能:棘背动物与Robofish相互作用。我们研究了两种类型的互动:招聘和领导。我们发现,Robofish可以从避难所中招募一条鱼,并且可以以十个一组为一组,即以领导者的身份开始转向。我们还表明,在鱼类在新环境中度过的前30分钟后,Robofish的影响减弱了。其次,使用这种方法,我们调查了公制距离和拓扑个体间距离对十只浅滩中机器人鱼对鱼的方向的影响的影响。我们发现,在此回合中,个体间的交互作用主要是由拓扑距离而不是度量距离介导的。最后,我们讨论了这种新方法的潜力以及我们的发现对研究集体动物行为的重要性。

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