Ashraf I, Godoy-Diana R, Halloy J, Collignon B, Thiria B
Laboratoire de Physique et Mécanique des Milieux Hétérogènes (PMMH), UMR CNRS 7636, PSL-ESPCI Paris, Sorbonne Université-UPMC-Univ. Paris 06, Sorbonne Paris Cité-UPD-Univ. Paris 07, 10 rue Vauquelin, 75005 Paris, France.
Laboratoire de Physique et Mécanique des Milieux Hétérogènes (PMMH), UMR CNRS 7636, PSL-ESPCI Paris, Sorbonne Université-UPMC-Univ. Paris 06, Sorbonne Paris Cité-UPD-Univ. Paris 07, 10 rue Vauquelin, 75005 Paris, France
J R Soc Interface. 2016 Oct;13(123). doi: 10.1098/rsif.2016.0734.
In this work, we address the case of red nose tetra fish Hemigrammus bleheri swimming in groups in a uniform flow, giving special attention to the basic interactions and cooperative swimming of a single pair of fish. We first bring evidence of synchronization of the two fish, where the swimming modes are dominated by 'out-phase' and 'in-phase' configurations. We show that the transition to this synchronization state is correlated with the swimming speed (i.e. the flow rate), and thus with the magnitude of the hydrodynamic pressure generated by the fish body during each swimming cycle. From a careful spatio-temporal analysis corresponding to those synchronized modes, we characterize the distances between the two individuals in a pair in the basic schooling pattern. We test the conclusions of the analysis of fish pairs with a second set of experiments using groups of three fish. By identifying the typical spatial configurations, we explain how the nearest neighbour interactions constitute the building blocks of collective fish swimming.
在这项工作中,我们研究了红鼻剪刀鱼(Hemigrammus bleheri)在均匀水流中群体游动的情况,特别关注一对鱼的基本相互作用和协同游动。我们首先给出了两条鱼同步的证据,其中游动模式主要由“异相”和“同相”配置主导。我们表明,向这种同步状态的转变与游动速度(即流速)相关,因此与每条鱼在每个游动周期中身体产生的流体动力压力大小相关。通过对这些同步模式进行仔细的时空分析,我们确定了基本集群模式中一对鱼个体之间的距离。我们用第二组三条鱼的实验来检验对鱼对分析得出的结论。通过识别典型的空间配置,我们解释了最近邻相互作用如何构成群体鱼类游动的基本要素。