activity
20172024
most citedGraph-PCNN: Two Stage Human Pose Estimation with Graph Pose Refinement

12 citations · 19 across the 6 of their papers we have counts for

collaborators
Showing cs.CVShow all

9 papers · 1 filter

cs.CV20241 cited

EventEgo3D: 3D Human Motion Capture from Egocentric Event Streams

Christen Millerdurai, Hiroyasu Akada, Jian Wang +3

Monocular egocentric 3D human motion capture is a challenging and actively researched problem. Existing methods use synchronously operating visual sensors (e.g. RGB cameras) and of…

cs.CV2024

3D Human Pose Perception from Egocentric Stereo Videos

Hiroyasu Akada, Jian Wang, Vladislav Golyanik +1

While head-mounted devices are becoming more compact, they provide egocentric views with significant self-occlusions of the device user. Hence, existing methods often fail to accur…

cs.CV2023

Egocentric Whole-Body Motion Capture with FisheyeViT and Diffusion-Based Motion Refinement

Jian Wang, Zhe Cao, Diogo Luvizon +5

In this work, we explore egocentric whole-body motion capture using a single fisheye camera, which simultaneously estimates human body and hand motion. This task presents significa…

cs.CV20221 cited

Estimating Egocentric 3D Human Pose in the Wild with External Weak Supervision

Jian Wang, Lingjie Liu, Weipeng Xu +3

Egocentric 3D human pose estimation with a single fisheye camera has drawn a significant amount of attention recently. However, existing methods struggle with pose estimation from…

cs.CV2021

Estimating Egocentric 3D Human Pose in Global Space

Jian Wang, Lingjie Liu, Weipeng Xu +2

Egocentric 3D human pose estimation using a single fisheye camera has become popular recently as it allows capturing a wide range of daily activities in unconstrained environments,…

cs.CV202012 cited

Graph-PCNN: Two Stage Human Pose Estimation with Graph Pose Refinement

Jian Wang, Xiang Long, Yuan Gao +2

Recently, most of the state-of-the-art human pose estimation methods are based on heatmap regression. The final coordinates of keypoints are obtained by decoding heatmap directly.…