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Optic flow stabilizes flight in ruby-throated hummingbirds

机译:光学流稳定了红宝石喉蜂鸟的飞行

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摘要

Flying birds rely on visual cues for retinal image stabilization by negating rotation-induced optic flow, the motion of the visual panorama across the retina, through corrective eye and head movements. In combination with vestibular and proprioceptive feedback, birds may also use visual cues to stabilize their body during flight. Here, we test whether artificially induced wide-field motion generated through projected visual patterns elicits maneuvers in body orientation and flight position, in addition to stabilizing vision. To test this hypothesis, we present hummingbirds flying freely within a 1.2 m cylindrical visual arena with a virtual surround rotated at different speeds about its vertical axis. The birds responded robustly to these visual perturbations by rotating their heads and bodies with the moving visual surround, and by adjusting their flight trajectories, following the surround. Thus, similar to insects, hummingbirds appear to use optic flow cues to control flight maneuvers as well as to stabilize their visual inputs.
机译:飞鸟通过矫正眼睛和头部的运动来消除旋转感应的光流,穿过视网膜的视觉全景运动,从而依靠视觉线索来稳定视网膜图像。结合前庭和本体感受反馈,鸟类还可能在飞行过程中使用视觉提示来稳定其身体。在这里,我们测试了除了稳定视力之外,是否通过投影的视觉模式产生的人为诱导的宽视场运动是否引起人体定向和飞行位置的回旋。为了验证这一假设,我们展示了蜂鸟在1.2 m圆柱形视觉区域内自由飞行,并围绕其垂直轴以不同速度旋转了虚拟环绕。鸟类通过动态的视觉环境旋转其头部和身体,并根据其周围环境调整飞行轨迹,从而对这些视觉干扰做出有力的响应。因此,类似于昆虫,蜂鸟似乎使用视觉流提示来控制飞行操纵并稳定其视觉输入。

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