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FicTrac: A visual method for tracking spherical motion and generating fictive animal paths

机译:FicTrac:一种跟踪球形运动并生成虚拟动物路径的视觉方法

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Studying how animals interface with a virtual reality can further our understanding of how attention, learning and memory, sensory processing, and navigation are handled by the brain, at both the neurophysiological and behavioural levels. To this end, we have developed a novel vision-based tracking system, FicTrac (Fictive path Tracking software), for estimating the path an animal makes whilst rotating an air-supported sphere using only input from a standard camera and computer vision techniques. We have found that the accuracy and robustness of FicTrac outperforms a low-cost implementation of a standard optical mouse-based approach for generating fictive paths. FicTrac is simple to implement for a wide variety of experimental configurations and, importantly, is fast to execute, enabling real-time sensory feedback for behaving animals. We have used FicTrac to record the behaviour of tethered honeybees, Apis mellifera, whilst presenting visual stimuli in both open-loop and closed-loop experimental paradigms. We found that FicTrac could accurately register the fictive paths of bees as they walked towards bright green vertical bars presented on an LED arena. Using FicTrac, we have demonstrated closed-loop visual fixation in both the honeybee and the fruit fly, Drosophila melanogaster, establishing the flexibility of this system. FicTrac provides the experimenter with a simple yet adaptable system that can be combined with electrophysiological recording techniques to study the neural mechanisms of behaviour in a variety of organisms, including walking vertebrates.
机译:研究动物如何与虚拟现实交互,可以进一步使我们理解大脑在神经生理和行为层面如何处理注意力,学习和记忆,感觉处理和导航。为此,我们已经开发了一种新颖的基于视觉的跟踪系统FicTrac(虚拟路径跟踪软件),用于仅使用标准相机和计算机视觉技术的输入来估算动物旋转空气支撑球体时的路径。我们发现FicTrac的准确性和鲁棒性优于基于标准光学鼠标的虚拟路径生成方法的低成本实现。 FicTrac对于各种实验配置都易于实现,并且重要的是,它的执行速度很快,能够为行为动物提供实时的感官反馈。我们已经使用FicTrac记录了束缚蜜蜂Apis mellifera的行为,同时在开环和闭环实验范式中都呈现了视觉刺激。我们发现,当FicTrac朝着LED舞台上呈现的鲜绿色垂直条走时,它们可以准确地记录蜜蜂的虚拟路径。使用FicTrac,我们已经证明了蜜蜂和果蝇Drosophila melanogaster的闭环视觉固定,确立了该系统的灵活性。 FicTrac为实验人员提供了一个简单而又适应性强的系统,该系统可以与电生理记录技术结合使用,以研究包括步行脊椎动物在内的多种生物的行为的神经机制。

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