首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >Role of side-slip flight in target pursuit: blue-tailed damselflies (Ischnura elegans) avoid body rotation while approaching a moving perch
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Role of side-slip flight in target pursuit: blue-tailed damselflies (Ischnura elegans) avoid body rotation while approaching a moving perch

机译:侧滑飞行在目标追求中的作用:蓝尾豆瓣塞(伊斯皮伦杆菌)避免身体旋转,同时接近移动的鲈鱼

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摘要

Visually guided flight control requires processing changes in the visual panorama (optic-flow) resulting from self-movement relative to stationary objects, as well as from moving objects passing through the field of view. We studied the ability of the blue-tailed damselfly, Ischnura elegans, to successfully land on a perch moving unpredictably. We tracked the insects landing on a vertical pole moved linearly 6 cm back and forth with sinusoidal changes in velocity. When the moving perch changed direction at frequencies higher than 1 Hz, the damselflies engaged in manoeuvres that typically involved sideways flight, with minimal changes in body orientation relative to the stationary environment. We show that these flight manoeuvres attempted to fix the target in the centre of the field of view when flying in any direction while keeping body rotation changes about the yaw axis to the minimum. We propose that this pursuit strategy allows the insect to obtain reliable information on self and target motion relative to the stationary environment from the translational optic-flow, while minimizing interference from the rotational optic-flow. The ability of damselflies to fly in any direction, irrespective of body orientation, underlines the superb flight control of these aerial predators.
机译:视觉引导的飞行控制需要处理由相对于静止物体的自动运动产生的视觉全景(光学流量)的变化,以及通过通过视野的移动物体。我们研究了蓝尾蜻蜓,伊斯兰教秀丽隐杆线的能力,成功地降落在鲈鱼上不可预测。我们跟踪着陆在垂直杆上的昆虫以6厘米的速度来回移动6厘米,速度变化。当移动栖息地在高于1 Hz的频率时改变方向时,抑制器从事通常涉及侧向飞行的机动,相对于静止环境具有最小的体内取向变化。我们表明,这些飞行动作试图在任何方向上飞行时将目标固定在视野中的中心,同时保持身体旋转对偏航轴的变化到最小。我们建议这种追求策略允许昆虫从转化光流中获得关于自我和目标运动的可靠信息,同时最大限度地减少旋转光学流动的干扰。无论身体取向如何,豆娘才能沿任何方向飞行的能力,强调了这些空中捕食者的卓越飞行控制。

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