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The moment before touchdown: landing manoeuvres of the honeybee Apis mellifera

机译:着陆之前的那一刻:蜜蜂“蜜蜂”的着陆动作

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摘要

Although landing is a crucial part of insect flight, it has attracted relatively little study. Here, we investigate, for the first time, the final moments of a honeybee's (Apis mellifera) landing manoeuvre. Using high-speed video recordings, we analyse the behaviour of bees as they approach and land on surfaces of various orientations. The bees enter a stable hover phase, immediately prior to touchdown. We have quantified behaviour during this hover phase and examined whether it changes as the tilt of the landing surface is varied from horizontal (floor), through sloped (uphill) and vertical (wall), to inverted (ceiling). The bees hover at a remarkably constant distance from the surface, irrespective of its tilt. Body inclination increases progressively as the tilt of the surface is increased, and is accompanied by an elevation of the antennae. The tight correlation between the tilt of the surface, and the orientation of the body and the antennae, indicates that the bee's visual system is capable of inferring the tilt of the surface, and pointing the antennae toward it. Touchdown is initiated by extending the appendage closest to the surface, namely, the hind legs when landing on horizontal or sloping surfaces, and the front legs or antennae when landing on vertical surfaces. Touchdown on inverted surfaces is most likely triggered by a mechanosensory signal from the antennae. Evidently, bees use a landing strategy that is flexibly tailored to the varying topography of the terrain.
机译:尽管着陆是昆虫飞行的关键部分,但它吸引的研究相对较少。在这里,我们首次调查了蜜蜂(蜜蜂)着陆动作的最后时刻。使用高速视频记录,我们分析了蜜蜂接近和降落在不同方向的表面时的行为。蜜蜂在触地之前立即进入稳定的悬停阶段。我们已经量化了在此悬停阶段的行为,并检查了它是否随着陆表面的倾斜度从水平(地板),倾斜(上坡)和垂直(墙)到倒置(天花板)变化而变化。无论其倾斜度如何,蜜蜂都与表面保持明显恒定的距离。身体倾斜度随着表面倾斜度的增加而逐渐增加,并伴随着触角的升高。表面的倾斜度与身体和触角的方向之间的紧密相关性表明,蜜蜂的视觉系统能够推断表面的倾斜度,并将触角指向该方向。着陆是通过延伸最靠近水面的附件开始的,即在水平或倾斜表面着陆时的后腿,在垂直表面着陆时的前腿或触角。倒转表面上的着陆很可能是由天线发出的机械感测信号触发的。显然,蜜蜂使用了针对地形变化的地形而灵活定制的着陆策略。

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