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在果蝇中,单一感觉运动控制任务的两种追踪策略。

Two pursuit strategies for a single sensorimotor control task in blowfly.

机构信息

Aix Marseille Univ, CNRS, ISM, Marseille, France.

Department of Bioengineering, Imperial College, London, SW7 2AS, UK.

出版信息

Sci Rep. 2020 Nov 27;10(1):20762. doi: 10.1038/s41598-020-77607-9.

Abstract

Effective visuomotor coordination is a necessary requirement for the survival of many terrestrial, aquatic, and aerial animal species. We studied the kinematics of aerial pursuit in the blowfly Lucilia sericata using an actuated dummy as target for freely flying males. We found that the flies perform target tracking in the horizontal plane and target interception in the vertical plane. Our behavioural data suggest that the flies' trajectory changes are a controlled combination of target heading angle and of the rate of change of the bearing angle. We implemented control laws in kinematic models and found that the contributions of proportional navigation strategy are negligible. We concluded that the difference between horizontal and vertical control relates to the difference in target heading angle the fly keeps constant: 0° in azimuth and 23° in elevation. Our work suggests that male Lucilia control both horizontal and vertical steerings by employing proportional controllers to the error angles. In horizontal plane, this controller operates at time delays as small as 10 ms, the fastest steering response observed in any flying animal, so far.

摘要

有效的视动协调是许多陆地、水生和空中动物物种生存的必要条件。我们使用一个受驱动物体作为自由飞行雄性蝇的目标,研究了丝光绿蝇在空中追逐的运动学。我们发现苍蝇在水平面进行目标跟踪,在垂直面进行目标拦截。我们的行为数据表明,苍蝇的轨迹变化是目标航向角和方位角变化率的受控组合。我们在运动学模型中实现了控制律,并发现比例导航策略的贡献可以忽略不计。我们得出的结论是,水平和垂直控制之间的差异与苍蝇保持不变的目标航向角有关:方位角为 0°,仰角为 23°。我们的工作表明,雄性丝光绿蝇通过对误差角度使用比例控制器来控制水平和垂直转向。在水平面,这个控制器的工作延迟时间低至 10ms,是迄今为止在任何飞行动物中观察到的最快的转向反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cab8/7695743/22b8b2b7ed75/41598_2020_77607_Fig1_HTML.jpg

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