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DESIGN, CONSTRUCTION, AND TESTING OF A FLYING PREY SIMULATOR

机译:飞行猎物模拟器的设计,施工和测试

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The goal of this research project is to investigate the neuronal control of flying prey interception in dragonflies by designing, constructing, and testing an apparatus to simulate the complex motions of a flying insect. Our three-dimensional motion device is capable of mimicking a flying insect by moving a small bead accurately up to speeds of 1 m/s in any direction. Dragonflies are efficient aerial predators that can intercept and capture small insects in flight. Our stimulus device will be used to determine the way in which dragonfly neurons encode information about object movement in three dimensions. Sinusoidal position tracking experiments using multiple input frequencies were conducted using the apparatus. The results indicate that the machine operates with good repeatability with little variability between trials. Preliminary dragonfly testing with the apparatus showed favorable results, indicating proof of concept.
机译:该研究项目的目标是通过设计,构建和测试一种装置来调查蜻蜓中飞行猎物拦截的神经元控制,以模拟飞虫的复杂运动。我们的三维运动装置能够通过在任何方向上准确地移动小珠子,以便将小珠子移动到速度为1 m / s的速度来模仿飞昆虫。蜻蜓是有效的空中捕食者,可以在飞行中拦截和捕获小昆虫。我们的刺激装置将用于确定蜻蜓神经元在三维中编码关于物体运动的信息的方式。使用该装置进行使用多输入频率的正弦位置跟踪实验。结果表明,该机器以良好的重复性运行,试验之间的可变性很小。使用该设备的初步蜻蜓测试显示了良好的结果,表明概念证明。

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