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Video-based automatic lameness detection of dairy cows using pose estimation and multiple locomotion traits

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arxiv 2401.05202 v2 pith:5QJD3N22 submitted 2024-01-10 cs.CV

Video-based automatic lameness detection of dairy cows using pose estimation and multiple locomotion traits

classification cs.CV
keywords traitslocomotionkeypointslamenessmultiplewerebackbobbing
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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This study presents an automated lameness detection system that uses deep-learning image processing techniques to extract multiple locomotion traits associated with lameness. Using the T-LEAP pose estimation model, the motion of nine keypoints was extracted from videos of walking cows. The videos were recorded outdoors, with varying illumination conditions, and T-LEAP extracted 99.6% of correct keypoints. The trajectories of the keypoints were then used to compute six locomotion traits: back posture measurement, head bobbing, tracking distance, stride length, stance duration, and swing duration. The three most important traits were back posture measurement, head bobbing, and tracking distance. For the ground truth, we showed that a thoughtful merging of the scores of the observers could improve intra-observer reliability and agreement. We showed that including multiple locomotion traits improves the classification accuracy from 76.6% with only one trait to 79.9% with the three most important traits and to 80.1% with all six locomotion traits.

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