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在虚拟现实条件下,大黄蜂能够高效地进行视觉学习:大小并不重要。

Efficient visual learning by bumble bees in virtual-reality conditions: Size does not matter.

机构信息

Centre de Recherches sur la Cognition Animale, Centre de Biologie Intégrative (CBI), University of Toulouse, CNRS, UPS, Toulouse, France.

French Academy of Sciences for University Professors, Institut Universitaire de France (IUF), Paris, France.

出版信息

Insect Sci. 2023 Dec;30(6):1734-1748. doi: 10.1111/1744-7917.13181. Epub 2023 Feb 28.

Abstract

Recent developments allowed establishing virtual-reality (VR) setups to study multiple aspects of visual learning in honey bees under controlled experimental conditions. Here, we adopted a VR environment to investigate the visual learning in the buff-tailed bumble bee Bombus terrestris. Based on responses to appetitive and aversive reinforcements used for conditioning, we show that bumble bees had the proper appetitive motivation to engage in the VR experiments and that they learned efficiently elemental color discriminations. In doing so, they reduced the latency to make a choice, increased the proportion of direct paths toward the virtual stimuli and walked faster toward them. Performance in a short-term retention test showed that bumble bees chose and fixated longer on the correct stimulus in the absence of reinforcement. Body size and weight, although variable across individuals, did not affect cognitive performances and had a mild impact on motor performances. Overall, we show that bumble bees are suitable experimental subjects for experiments on visual learning under VR conditions, which opens important perspectives for invasive studies on the neural and molecular bases of such learning given the robustness of these insects and the accessibility of their brain.

摘要

最近的发展使得建立虚拟现实 (VR) 环境成为可能,以便在受控实验条件下研究蜜蜂在视觉学习方面的多个方面。在这里,我们采用了 VR 环境来研究黄臀熊蜂 Bombus terrestris 的视觉学习。基于对用于条件作用的奖赏和惩罚的反应,我们表明,熊蜂具有适当的食欲动机来参与 VR 实验,并且它们能够有效地学习基本的颜色辨别。这样做,它们减少了做出选择的潜伏期,增加了直接走向虚拟刺激的比例,并走得更快。短期保留测试的表现表明,在没有强化的情况下,熊蜂会更长时间地选择和注视正确的刺激。尽管个体之间的体型和体重存在差异,但它们不会影响认知表现,对运动表现的影响也很轻微。总体而言,我们表明,熊蜂是在 VR 条件下进行视觉学习实验的合适实验对象,鉴于这些昆虫的稳健性和其大脑的可及性,这为研究这种学习的神经和分子基础的入侵性研究开辟了重要的前景。

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