Science Advances · 2023 · 23 citations · 57 references
Small AnimalsEngineeringMovement EcologyField RoboticsImage Sequence AnalysisImage AnalysisData SciencePattern RecognitionObject TrackingPrecision Behavioral QuantificationRobot LearningAnimal TrackingConservation BiologyMachine VisionComputer ScienceStructure From MotionComputer VisionEnvironment Reconstruction PipelineEye TrackingScene UnderstandingAnimal BehaviorTracking SystemMotion Analysis
Quantifying the behavior of small animals traversing long distances in complex environments is one of the most difficult tracking scenarios for computer vision. Tiny and low-contrast foreground objects have to be localized in cluttered and dynamic scenes as well as trajectories compensated for camera motion and drift in multiple lengthy recordings. We introduce CATER, a novel methodology combining an unsupervised probabilistic detection mechanism with a globally optimized environment reconstruction pipeline enabling precision behavioral quantification in natural environments. Implemented as an easy to use and highly parallelized tool, we show its application to recover fine-scale motion trajectories, registered to a high-resolution image mosaic reconstruction, of naturally foraging desert ants from unconstrained field recordings. By bridging the gap between laboratory and field experiments, we gain previously unknown insights into ant navigation with respect to motivational states, previous experience, and current environments and provide an appearance-agnostic method applicable to study the behavior of a wide range of terrestrial species under realistic conditions.
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DeepLabCut: markerless pose estimation of user-defined body parts with deep learning
Alexander Mathis, Pranav Mamidanna, Kevin M. Cury et al. · Nature Neuroscience · 2018 · 5.2K citations · Full text
Dance, Kinesiology, Image Analysis +14
Microstructure of a spatial map in the entorhinal cortex
Torkel Hafting, Marianne Fyhn, Sturla Molden et al. · Nature · 2005 · 4.1K citations
Brain Structure, Neuroanatomy, Computational Neuroscience +7
High-throughput ethomics in large groups of Drosophila
Kristin Branson, Alice A. Robie, John A. Bender et al. · Nature Methods · 2009 · 829 citations · Full text