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临界种群密度引发广阔海洋鱼群的快速形成。

Critical population density triggers rapid formation of vast oceanic fish shoals.

作者信息

Makris Nicholas C, Ratilal Purnima, Jagannathan Srinivasan, Gong Zheng, Andrews Mark, Bertsatos Ioannis, Godø Olav Rune, Nero Redwood W, Jech J Michael

机构信息

Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139, USA.

出版信息

Science. 2009 Mar 27;323(5922):1734-7. doi: 10.1126/science.1169441.

Abstract

Similarities in the behavior of diverse animal species that form large groups have motivated attempts to establish general principles governing animal group behavior. It has been difficult, however, to make quantitative measurements of the temporal and spatial behavior of extensive animal groups in the wild, such as bird flocks, fish shoals, and locust swarms. By quantifying the formation processes of vast oceanic fish shoals during spawning, we show that (i) a rapid transition from disordered to highly synchronized behavior occurs as population density reaches a critical value; (ii) organized group migration occurs after this transition; and (iii) small sets of leaders significantly influence the actions of much larger groups. Each of these findings confirms general theoretical predictions believed to apply in nature irrespective of animal species.

摘要

形成大群体的不同动物物种在行为上的相似性,促使人们尝试建立支配动物群体行为的一般原则。然而,要对野外大量动物群体(如鸟群、鱼群和蝗虫群)的时间和空间行为进行定量测量却很困难。通过量化大量海洋鱼群在产卵期间的形成过程,我们发现:(i)随着种群密度达到临界值,会出现从无序行为到高度同步行为的快速转变;(ii)这种转变之后会发生有组织的群体迁移;(iii)少量的领导者会显著影响大得多的群体的行动。这些发现均证实了被认为适用于自然界、与动物物种无关的一般理论预测。

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