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Higher-order discrimination learning by honeybees in a virtual environment

机译:在虚拟环境中,蜜蜂的高阶歧视学习

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Non-elemental learning constitutes a cognitive challenge because events to be learned are usually ambiguous in terms of reinforcement outcome, contrary to elemental learning, which relies on unambiguous associations. Negative patterning (NP) constitutes a paradigmatic case of non-elemental learning, as subjects have to learn that single elements are reinforced while their simultaneous presentation is not reinforced (A+, B+ vs. AB-). Solving NP requires treating AB as being different from the linear sum of its components in order to overcome the ambiguity of stimulus reinforcement (i.e. A and B are as often reinforced as not reinforced). The honeybee is currently the only insect mastering NP as shown by studies restricted mainly to the olfactory domain. Here, we tested the bees' capacity to solve a NP discrimination in the visual domain and used to this end a virtual reality (VR) environment in which a tethered bee walking stationary on a spherical treadmill faces visual stimuli projected on a semicircular screen. We show that bees learn a composite grating made of alternated green and blue bars in an elemental way, and generalize their response to both a blue and a green grating. Yet, after NP training, one-quarter of the bees inhibited elemental processing and responded significantly more to the single-coloured gratings than to the composite grating. Alternative strategies were used by the other bees, which achieved partial NP learning. These results offer attractive perspectives to study different forms of visual learning in a controlled VR environment, and dissect their underlying mechanisms.
机译:非元素学习构成了认知挑战,因为待学习的事件通常在强化结果方面是暧昧的,这与元素学习相反,依赖于明确的协会。负Patterning(NP)构成非元素学习的范式案例,因为受试者必须了解单一元素,同时同时呈现不加强(A +,B + Vs. AB-)。求解NP需要将AB视为与其部件的线性和不同,以克服刺激增强的模糊性(即A和B的常见是不加强的)。蜜蜂是目前唯一的昆虫掌握NP,如主要限制在嗅觉域所示。在这里,我们测试了蜜蜂在视域中解决了NP歧视的能力,并用于该结束一个虚拟现实(VR)环境,其中在球形跑步机上行走的卧系蜜蜂面向突出的视觉刺激在半圆形屏幕上。我们表明蜜蜂以元素的方式学习由交替的绿色和蓝色条制成的复合光栅,并概括了对蓝色和绿色光栅的反应。然而,在NP培训之后,四分之一的蜜蜂抑制了元素处理,并对单色的光栅比复合光栅相比显着响应。其他蜜蜂使用的替代策略,实现了部分NP学习。这些结果提供了吸引人的视角,以研究受控的VR环境中的不同形式的视觉学习,并对其潜在的机制解剖。

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