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

机译:在鱼类中聚集智慧?在(某些)动物群体中展示分布式和自组织的集体智慧的困难

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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.
机译:与较小的群体或单身的个体相比,较大的群体通常具有更大的解决认知任务的能力。这在社交昆虫,成群的鸟类中飞行以及在集体中对掠食者保持警惕的猎物中已得到充分确立。对社会昆虫的研究令人信服地表明,认知能力的提高可以归因于个体之间的自组织局部相互作用,这些相互作用整合了他们的贡献,通常被称为群体智能。这种新兴的集体智慧已普及,并已直接应用于包括鱼在内的其他动物群体。尽管这是一种可能的机制,至少可以部分地解释脊椎动物的群体表现,但我在这里认为,实证研究很少排除其他可能的解释。因此,关于鱼类自组织的集体(或“群居”)智力的证据并不像它最初出现的那样有力。这些其他的解释,如“能力池”和更大的群体中的个体更大的认知能力,也将进行回顾。还讨论了为什么在诸如浅滩鱼这样的动物中,与社交昆虫相比,通常很少能观察到整体群体绩效的改善。这篇综述旨在强调在动物群体中探索集体智慧的困难,理想情况下会导致开展进一步的实证研究以阐明这些问题。

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    Ioannou Christos C;

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  • 年度 2016
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  • 正文语种 eng
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