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首页> 外文期刊>The Journal of Experimental Biology >HONEYBEE NAVIGATION EN ROUTE TO THE GOAL - VISUAL FLIGHT CONTROL AND ODOMETRY
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HONEYBEE NAVIGATION EN ROUTE TO THE GOAL - VISUAL FLIGHT CONTROL AND ODOMETRY

机译:蜜蜂导航到目标的路线-视觉飞行控制和配件

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Recent research has uncovered a number of different ways in which bees use cues derived from optic flow for navigational purposes. The distance flown to a food source is gauged by integrating the apparent motion of the visual world that is experienced ew route, In other words, bees possess a visually driven 'odometer' that is robust to variations in wind load and energy expenditure. Bees flying through a tunnel maintain equidistance to the flanking walls by balancing the apparent speeds of the images of the walls. This strategy enables them to negotiate narrow passages or to fly between obstacles. The speed of flight in a tunnel is controlled by holding constant the average image velocity as seen by the two eyes. This avoids potential collisions by ensuring that the bee slows down when flying through narrow passages. Bees landing on a horizontal surface hold constant the image velocity of the surface as they approach it. This automatically ensures that flight speed decreases with altitude and is close to zero at touchdown. The movement-sensitive mechanisms underlying these various behaviours seem to be different, qualitatively as well as quantitatively, from those mediating the well-investigated optomotor response. [References: 25]
机译:最近的研究发现了蜜蜂使用多种不同的方式将源自光流的提示用于导航目的。到食物源的飞行距离是通过整合视觉世界的视线运动(通过路线)来衡量的。换句话说,蜜蜂拥有视觉驱动的“里程表”,该里程表对风载荷和能量消耗的变化具有鲁棒性。穿过隧道的蜜蜂通过平衡墙壁图像的视在速度来保持与侧墙的等距距离。这种策略使他们能够协商狭窄的通道或在障碍物之间飞行。通过保持两只眼睛看到的平均图像速度恒定,可以控制隧道中的飞行速度。通过确保蜜蜂在狭窄的通道中飞行时减速来避免潜在的碰撞。降落在水平表面上的蜜蜂在接近表面时使表面的图像速度保持恒定。这将自动确保飞行速度随高度降低而在着陆时接近零。这些介导的各种行为的运动敏感机制在质量和数量上似乎与调解光动力反应的机制不同。 [参考:25]

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