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Larger groups are more successful in innovative problem solving in house sparrows

机译:较大的群体在解决麻雀的创新问题方面更成功

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Group living offers well-known benefits to animals, such as better predator avoidance and increased foraging success. An important additional, but so far neglected, advantage is that groups may cope more effectively with unfamiliar situations through faster innovations of new solutions by some group members. We tested this hypothesis experimentally by presenting a new foraging task of opening a familiar feeder in an unfamiliar way to house sparrows in small and large groups (2 versus 6 birds). Group size had strong effects on problem solving: sparrows performed 4 times more and 11 times faster openings in large than in small groups, and all members of large groups profited by getting food sooner (7 times on average). Independently from group size, urban groups were more successful than rural groups. The disproportionately higher success in large groups was not a mere consequence of higher number of attempts, but was also related to a higher effectiveness of problem solving (3 times higher proportion of successful birds). The analyses of the birds' behavior suggest that the latter was not explained by either reduced investment in antipredator vigilance or reduced neophobia in large groups. Instead, larger groups may contain more diverse individuals with different skills and experiences, which may increase the chance of solving the task by some group members. Increased success in problem solving may promote group living in animals and may help them to adapt quickly to new situations in rapidly-changing environments.
机译:集体生活给动物带来了众所周知的好处,例如更好地避免捕食和增加觅食成功。一个重要的附加但至今仍被忽略的优势是,组可以通过某些组成员更快地对新解决方案进行创新来更有效地应对陌生的情况。我们通过提出一种新的觅食任务以不熟悉的方式打开熟悉的饲养者,以容纳小群和大群的麻雀(2羽对6羽)来试验性地验证了这一假设。小组人数对解决问题的影响很大:麻雀的开张率比小团体大4倍,快11倍,大团体中的所有成员都更快地获得食物而获利(平均7倍)。与群体规模无关,城市群体比农村群体更成功。在大型团体中取得不成比例的更高成功不仅是尝试次数增加的结果,而且还与解决问题的更高效率相关(成功鸟的比例是其三倍)。对鸟类行为的分析表明,对大型鸟类而言,减少对捕食者警惕性的投入或减少对新恐惧症的解释都不能解释鸟类的行为。相反,较大的组可能包含具有不同技能和经验的更多不同的人,这可能会增加某些组成员解决任务的机会。解决问题的成功率不断提高,可能会促进动物群的生活,并可能帮助它们迅速适应不断变化的环境中的新情况。

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