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鸽群中的层级群体动力学。

Hierarchical group dynamics in pigeon flocks.

机构信息

Department of Biological Physics, Eötvös University, Pázmány Péter sétány 1A, H-1117, Budapest, Hungary.

出版信息

Nature. 2010 Apr 8;464(7290):890-3. doi: 10.1038/nature08891.

Abstract

Animals that travel together in groups display a variety of fascinating motion patterns thought to be the result of delicate local interactions among group members. Although the most informative way of investigating and interpreting collective movement phenomena would be afforded by the collection of high-resolution spatiotemporal data from moving individuals, such data are scarce and are virtually non-existent for long-distance group motion within a natural setting because of the associated technological difficulties. Here we present results of experiments in which track logs of homing pigeons flying in flocks of up to 10 individuals have been obtained by high-resolution lightweight GPS devices and analysed using a variety of correlation functions inspired by approaches common in statistical physics. We find a well-defined hierarchy among flock members from data concerning leading roles in pairwise interactions, defined on the basis of characteristic delay times between birds' directional choices. The average spatial position of a pigeon within the flock strongly correlates with its place in the hierarchy, and birds respond more quickly to conspecifics perceived primarily through the left eye-both results revealing differential roles for birds that assume different positions with respect to flock-mates. From an evolutionary perspective, our results suggest that hierarchical organization of group flight may be more efficient than an egalitarian one, at least for those flock sizes that permit regular pairwise interactions among group members, during which leader-follower relationships are consistently manifested.

摘要

动物在群体中一起移动时会表现出各种迷人的运动模式,这些模式被认为是群体成员之间微妙的局部相互作用的结果。尽管从移动个体收集高分辨率时空数据是研究和解释集体运动现象最有信息的方法,但由于相关技术困难,这种数据很少,而且在自然环境中对于远距离群体运动实际上是不存在的。在这里,我们展示了一些实验的结果,在这些实验中,多达 10 只鸽子的归巢鸽群的飞行轨迹记录是通过高分辨率的轻量级 GPS 设备获得的,并使用了各种受统计物理学中常用方法启发的相关函数进行了分析。我们从基于鸟类方向选择之间特征延迟时间的成对相互作用中的主导角色定义的数据中,发现了群体成员之间的明确层次结构。鸽子在群体中的平均空间位置与其在层次结构中的位置强烈相关,并且鸽子对通过左眼感知到的同种个体的反应更快——这两个结果都揭示了在相对于同伴处于不同位置的鸟类的不同作用。从进化的角度来看,我们的研究结果表明,群体飞行的分层组织可能比平等主义组织更有效,至少对于那些允许群体成员之间定期进行成对相互作用的群体大小来说是如此,在这种相互作用中,始终表现出领导者-追随者关系。

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