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背景中的运动线索会影响蜜蜂在虚拟现实场景中的联想色觉学习。

Motion cues from the background influence associative color learning of honey bees in a virtual-reality scenario.

机构信息

Research Centre on Animal Cognition, Center for Integrative Biology, CNRS, University Paul Sabatier - Toulouse III, 118 Route de Narbonne, 31062, Toulouse Cedex 09, France.

School of Life and Environmental Sciences, Melbourne Burwood Campus, Deakin University, Melbourne, VIC, Australia.

出版信息

Sci Rep. 2021 Oct 26;11(1):21127. doi: 10.1038/s41598-021-00630-x.

Abstract

Honey bees exhibit remarkable visual learning capacities, which can be studied using virtual reality (VR) landscapes in laboratory conditions. Existing VR environments for bees are imperfect as they provide either open-loop conditions or 2D displays. Here we achieved a true 3D environment in which walking bees learned to discriminate a rewarded from a punished virtual stimulus based on color differences. We included ventral or frontal background cues, which were also subjected to 3D updating based on the bee movements. We thus studied if and how the presence of such motion cues affected visual discrimination in our VR landscape. Our results showed that the presence of frontal, and to a lesser extent, of ventral background motion cues impaired the bees' performance. Whenever these cues were suppressed, color discrimination learning became possible. We analyzed the specific contribution of foreground and background cues and discussed the role of attentional interference and differences in stimulus salience in the VR environment to account for these results. Overall, we show how background and target cues may interact at the perceptual level and influence associative learning in bees. In addition, we identify issues that may affect decision-making in VR landscapes, which require specific control by experimenters.

摘要

蜜蜂表现出显著的视觉学习能力,可以在实验室条件下使用虚拟现实 (VR) 景观进行研究。现有的蜜蜂 VR 环境并不完善,因为它们要么提供开环条件,要么提供 2D 显示。在这里,我们实现了一个真正的 3D 环境,在这个环境中,行走的蜜蜂学会根据颜色差异区分奖励和惩罚的虚拟刺激。我们包括了腹侧或额侧的背景线索,这些线索也根据蜜蜂的运动进行 3D 更新。因此,我们研究了这些运动线索的存在是否以及如何影响我们的 VR 景观中的视觉辨别能力。我们的结果表明,额侧和腹侧背景运动线索的存在会损害蜜蜂的表现,而在这些线索被抑制时,颜色辨别学习成为可能。我们分析了前景和背景线索的特定贡献,并讨论了注意力干扰和刺激显着性差异在 VR 环境中对这些结果的作用。总的来说,我们展示了背景和目标线索如何在感知层面相互作用,并影响蜜蜂的联想学习。此外,我们还确定了可能影响 VR 景观中决策制定的问题,这些问题需要实验者进行特定的控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00de/8548521/05ae337fab7b/41598_2021_630_Fig1_HTML.jpg

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