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Swarm intelligence in fish? The difficulty in demonstrating distributed and self-organised collective intelligence in (some) animal groups

机译:鱼类群体智力? 难以在(某些)动物群体中展示分布式和自组织的集体智能

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摘要

Larger groups often have a greater ability to solve cognitive tasks compared to smaller ones or lone individuals. This is well established in social insects, navigating flocks of birds, and in groups of prey collectively vigilant for predators. Research in social insects has convincingly shown that improved cognitive performance can arise from self-organised local interactions between individuals that integrates their contributions, often referred to as swarm intelligence. This emergent collective intelligence has gained in popularity and been directly applied to groups of other animals, including fish. Despite being a likely mechanism at least partially explaining group performance in vertebrates, I argue here that other possible explanations are rarely ruled out in empirical studies. Hence, evidence for self-organised collective (or 'swarm') intelligence in fish is not as strong as it would first appear. These other explanations, the 'pool-of-competence' and the greater cognitive ability of individuals when in larger groups, are also reviewed. Also discussed is why improved group performance in general may be less often observed in animals such as shoaling fish compared to social insects. This review intends to highlight the difficulties in exploring collective intelligence in animal groups, ideally leading to further empirical work to illuminate these issues. (C) 2016 The Author. Published by Elsevier B.V.
机译:与较小的组或孤独的人相比,较大的组通常具有更大的解决认知任务的能力。这是在社会昆虫中建立的,导航鸟类群,以及捕食者的猎物群体。社会昆虫的研究令人信服地表明,改善的认知性能可能来自整合其贡献的个人之间的自我组织的本地相互作用,通常被称为群体智力。这种紧急的集体智能获得了普及,并直接适用于包括鱼类的其他动物组。尽管是一种可能的机制,但至少部分地解释了脊椎动物中的群体性能,但在此争论在实证研究中很少排除其他可能的解释。因此,在鱼类中的自组织集体(或“群体”)的证据并不像首先出现的那样强烈。还审查了这些其他解释,“竞争力”和更大的个人认知能力在更大的群体中,也是在更大的群体中进行的。还讨论的是为什么改进的组性能一般可能在与社会昆虫相比,如粪便鱼等动物中观察到。本综述打算突出探索动物群体集体智能的困难,理想地导致进一步的实证工作来照亮这些问题。 (c)2016年作者。 elsevier b.v出版。

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