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领域排斥:野生棕海鸥在没有视觉信息的情况下找到隐藏的食物。

Exclusion in the field: wild brown skuas find hidden food in the absence of visual information.

机构信息

Laboratory for the Study of Cognitive Mechanisms, University of Lyon, 69500, Bron Rhône-Alpes, France.

Max-Planck-Institute for Ornithology, 82319, Seewiesen, Germany.

出版信息

Anim Cogn. 2021 Jul;24(4):867-876. doi: 10.1007/s10071-021-01486-4. Epub 2021 Feb 16.

Abstract

Inferential reasoning by exclusion allows responding adaptively to various environmental stimuli when confronted with inconsistent or partial information. In the experimental context, this mechanism involves selecting correctly between an empty option and a potentially rewarded one. Recently, the increasing reports of this capacity in phylogenetically distant species have led to the assumption that reasoning by exclusion is the result of convergent evolution. Within one largely unstudied avian order, i.e. the Charadriiformes, brown skuas (Catharacta antarctica ssp lonnbergi) are highly flexible and opportunistic predators. Behavioural flexibility, along with specific aspects of skuas' feeding ecology, may act as influencing factors in their ability to show exclusion performance. Our study aims to test whether skuas are able to choose by exclusion in a visual two-way object-choice task. Twenty-six wild birds were presented with two opaque cups, one covering a food reward. Three conditions were used: 'full information' (showing the content of both cups), 'exclusion' (showing the content of the empty cup), and 'control' (not showing any content). Skuas preferentially selected the rewarded cup in the full information and exclusion condition. The use of olfactory cues was excluded by results in the control condition. Our study opens new field investigations for testing further the cognition of this predatory seabird.

摘要

排除推理使我们在面对不一致或不完整的信息时能够适应各种环境刺激。在实验环境中,这种机制涉及在空选项和可能有奖励的选项之间正确选择。最近,越来越多的研究报告表明,这种能力存在于进化上相距甚远的物种中,这导致人们假设排除推理是趋同进化的结果。在一个研究相对较少的鸟类目中,即鸻形目,棕尾鹲(Catharacta antarctica ssp lonnbergi)是高度灵活和机会主义的捕食者。行为灵活性,以及海鸟取食生态学的某些方面,可能是影响它们表现出排除性能的因素。我们的研究旨在测试棕尾鹲是否能够在视觉双向物体选择任务中通过排除来进行选择。26 只野生鸟类被呈现两个不透明的杯子,一个杯子里有食物奖励。使用了三种条件:“全信息”(显示两个杯子的内容)、“排除”(显示空杯子的内容)和“控制”(不显示任何内容)。棕尾鹲在全信息和排除条件下优先选择有奖励的杯子。控制条件下的结果排除了嗅觉线索的使用。我们的研究为进一步测试这种掠食性海鸟的认知能力开辟了新的实地调查领域。

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