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TAPVid-3D: A Benchmark for Tracking Any Point in 3D

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arxiv 2407.05921 v2 pith:CDRA2JUZ submitted 2024-07-08 cs.CV cs.AIcs.LG

classification cs.CVcs.AIcs.LG
keywords trackingpointbenchmarktap-3dtaskexistingmodelsmotion
verification ladder T0 review T1 audit T2 compute T3 formal
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We introduce a new benchmark, TAPVid-3D, for evaluating the task of long-range Tracking Any Point in 3D (TAP-3D). While point tracking in two dimensions (TAP) has many benchmarks measuring performance on real-world videos, such as TAPVid-DAVIS, three-dimensional point tracking has none. To this end, leveraging existing footage, we build a new benchmark for 3D point tracking featuring 4,000+ real-world videos, composed of three different data sources spanning a variety of object types, motion patterns, and indoor and outdoor environments. To measure performance on the TAP-3D task, we formulate a collection of metrics that extend the Jaccard-based metric used in TAP to handle the complexities of ambiguous depth scales across models, occlusions, and multi-track spatio-temporal smoothness. We manually verify a large sample of trajectories to ensure correct video annotations, and assess the current state of the TAP-3D task by constructing competitive baselines using existing tracking models. We anticipate this benchmark will serve as a guidepost to improve our ability to understand precise 3D motion and surface deformation from monocular video. Code for dataset download, generation, and model evaluation is available at https://tapvid3d.github.io

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Cited by 2 Pith papers

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    cs.CV 2025-06 conditional novelty 6.0 of 10

    E3D-Bench compares 16 3D geometric foundation models on depth, reconstruction, pose, and view-synthesis tasks with a unified evaluation toolkit.

  2. BleedOrigin: Dynamic Bleeding Source Localization in Endoscopic Submucosal Dissection via Dual-Stage Detection and Tracking

    cs.CV 2025-07 conditional novelty 5.0 of 10

    A new ESD bleeding-source dataset and a dual-stage detection-tracking framework report 96.85% onset, 70.24% source, and 96.11% tracking accuracy within defined tolerances.

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