首页> 外文期刊>Proceedings of the Royal Society of London. Biological sciences >The fine structure of honeybee head and body yaw movements in a homing task.
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The fine structure of honeybee head and body yaw movements in a homing task.

机译:蜜蜂头部和身体的精细结构可在归位任务中偏航。

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Honeybees turn their thorax and thus their flight motor to change direction or to fly sideways. If the bee's head were fixed to its thorax, such movements would have great impact on vision. Head movements independent of thorax orientation can stabilize gaze and thus play an important and active role in shaping the structure of the visual input the animal receives. Here, we investigate how gaze and flight control interact in a homing task. We use high-speed video equipment to record the head and body movements of honeybees approaching and departing from a food source that was located between three landmarks in an indoor flight arena. During these flights, the bees' trajectories consist of straight flight segments combined with rapid turns. These short and fast yaw turns ('saccades') are in most cases accompanied by even faster head yaw turns that start about 8 ms earlier than the body saccades. Between saccades, gaze stabilization leads to a behavioural elimination of rotational components from the optical flow pattern, which facilitates depth perception from motion parallax.
机译:蜜蜂转动它们的胸部,从而使它们的飞行马达改变方向或向侧面飞行。如果将蜜蜂的头部固定在胸腔上,这种运动将对视力产生重大影响。与胸部方向无关的头部运动可以稳定视线,因此在塑造动物接受的视觉输入的结构方面起着重要而积极的作用。在这里,我们研究凝视和飞行控制在归位任务中如何相互作用。我们使用高速视频设备来记录蜜蜂在室内飞行场所的三个地标之间接近和离开食物源的蜜蜂的头部和身体运动。在这些飞行中,蜜蜂的轨迹由直线飞行段和快速转弯组成。在大多数情况下,这些短而快速的偏航转弯(“扫视”)伴随着甚至更快的头部偏航转弯,其起始时间比身体扫视早8 ms。在扫视之间,凝视稳定会从光学流模式中消除旋转分量的行为,从而有助于从运动视差中感知深度。

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