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Random Walk Revisited: Quantification and Comparative Analysis of Drosophila Walking Trajectories

机译:再访随机游走:果蝇行走轨迹的量化和比较分析。

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摘要

Walking trajectory is frequently measured to assess animal behavior. Air-supported spherical treadmills have been developed for real-time monitoring of animal walking trajectories. However, current systems for mice mainly employ computer mouse microcameras (chip-on-board sensors) to monitor ball motion, and these detectors exhibit technical issues with focus and rotation scale. In addition, computational methods to analyze and quantify the “random walk” of organisms are under-developed. In this work, we overcame the hurdle of frame-to-signal translation to develop a treadmill system with camera-based detection. Moreover, we generated a package of mathematical methods to quantify distinct aspects of walking trajectories. By extracting and quantifying certain features of walking dynamics with high temporal resolution, we found that depending on their internal state, flies employ different walking strategies to approach environmental cues. This camera-based treadmill system and method package may also be applicable to monitor the walking trajectories of other diverse animal species.
机译:经常测量步行轨迹以评估动物行为。空气支撑球形跑步机已经开发出来,可以实时监测动物的行走轨迹。但是,当前的鼠标系统主要使用计算机鼠标微型相机(板上芯片传感器)来监视球的运动,并且这些检测器在聚焦和旋转比例方面存在技术问题。此外,用于分析和量化生物“随机游动”的计算方法尚不完善。在这项工作中,我们克服了帧到信号转换的障碍,开发了基于摄像头的跑步机系统。此外,我们生成了一套数学方法来量化步行轨迹的各个方面。通过以高时间分辨率提取和量化步行动力学的某些特征,我们发现,苍蝇根据其内部状态采用不同的步行策略来接近环境线索。这种基于相机的跑步机系统和方法包也可以适用于监视其他各种动物物种的行走轨迹。

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