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Jingyi Ju

4 accepted papers

2026

Occluded Human Body Capture with Frequency Domain Denoising Prior

CVPR 2026

Monocular human motion capture in occlusion scenarios presents significant challenges. Although a few works have explicitly considered the occlusion problem, image-based methods are unreliable due to the lack of temporal constraints while video-based approaches cannot gain sufficient knowledge from

Cited by 0SourcecodeScholar
2023

Physics-Guided Human Motion Capture with Pose Probability Modeling

IJCAI 2023poster

Incorporating physics in human motion capture to avoid artifacts like floating, foot sliding, and ground penetration is a promising direction. Existing solutions always adopt kinematic results as reference motions, and the physics is treated as a post-processing module. However, due to the depth amb…

2023

Reconstructing Groups of People with Hypergraph Relational Reasoning

ICCV 2023poster

Due to the mutual occlusion, severe scale variation, and complex spatial distribution, the current multi-person mesh recovery methods cannot produce accurate absolute body poses and shapes in large-scale crowded scenes. To address the obstacles, we fully exploit crowd features for reconstructing gro…

Cited by 16PDFcodeScholar
2022

Neural MoCon: Neural Motion Control for Physically Plausible Human Motion Capture

CVPR 2022poster

Due to the visual ambiguity, purely kinematic formulations on monocular human motion capture are often physically incorrect, biomechanically implausible, and can not reconstruct accurate interactions. In this work, we focus on exploiting the high-precision and non-differentiable physics simulator to…

Cited by 40PDFScholar