Bumblebees locate goals in 3D with absolute height estimation from ventral optic flow.

IF 2.8 2区 生物学 Q2 BIOLOGY
Annkathrin Sonntag, Martin Egelhaaf, Olivier J N Bertrand, Mathieu Lihoreau
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引用次数: 0

Abstract

When foraging, flying animals like bees are often required to change their flight altitude from close to the ground to above the height of vegetation to reach their nest or a food source. While the mechanisms of navigating towards a goal in two dimensions are well investigated, the explicit use of height as a source for navigation in three dimensions remains mostly unknown. Our study aims to unravel which strategies bumblebees use for height estimation and whether they rely on global or local cues. We expanded a 2D goal localization paradigm, where a goal location is indicated by cylindrical landmarks, to the third dimension by using spherical landmarks to indicate a feeder's position in 3D and examined the search pattern of bumblebees. Additionally, we assessed the ability of bees to estimate the height of a feeder based on local landmarks and global references such as the ground. The search distribution for a feeder's position in 3D was less spatially concentrated compared to 2D. Assessing the bees' height estimation ability, we found bees could estimate a feeder's height using the ground as a reference. However, the feeder needed to be sufficiently close to the ground for the bees to choose correctly. When bumblebees are faced with the challenge of foraging in a 3D environment where the height of a food source and landmark cues are important, they demonstrate the ability to learn and return to a specific flower height. This suggests bumblebees rely on ventral optic flow for goal height estimation.

大黄蜂利用腹侧光流估计的绝对高度来定位三维目标。
觅食时,像蜜蜂这样的飞行动物经常需要改变飞行高度,从接近地面到高于植被的高度,以到达它们的巢穴或食物来源。虽然在二维空间中导航到目标的机制已经得到了很好的研究,但在三维空间中明确使用高度作为导航的来源仍然是未知的。我们的研究旨在揭示大黄蜂使用哪种策略来估计身高,以及它们是依赖于全局还是局部线索。我们扩展了二维目标定位范例,其中目标位置由圆柱形地标指示,通过使用球形地标在三维中指示喂食器的位置,并检查了大黄蜂的搜索模式。此外,我们还评估了蜜蜂根据当地地标和地面等全球参考资料估计喂食器高度的能力。与二维相比,三维馈线位置搜索分布的空间集中程度较低。评估蜜蜂的高度估计能力,我们发现蜜蜂可以用地面作为参考来估计喂食器的高度。然而,喂食器需要离地面足够近,蜜蜂才能正确选择。当大黄蜂面临在3D环境中觅食的挑战时,食物来源的高度和地标线索很重要,它们展示了学习和返回特定花朵高度的能力。这表明大黄蜂依靠腹侧光流来估计目标高度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.50
自引率
10.70%
发文量
494
审稿时长
1 months
期刊介绍: Journal of Experimental Biology is the leading primary research journal in comparative physiology and publishes papers on the form and function of living organisms at all levels of biological organisation, from the molecular and subcellular to the integrated whole animal.
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