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A Lightweight Multi-Metric No-Reference Image Quality Assessment Framework for UAV Imaging PatchPoison: Poisoning Multi-View Datasets to Degrade 3D Reconstruction 3DRealHead: Few-Shot Detailed Head Avatar GeoLink: A 3D-Aware Framework Towards Better Generalization in Cross-View Geo-Localization Towards Patient-Specific Deformable Registration in Laparoscopic Surgery Neural 3D Reconstruction of Planetary Surfaces from Descent-Phase Wide-Angle Imagery A High-Resolution Landscape Dataset for Concept-Based XAI With Application to Species Distribution Models DroneScan-YOLO: Redundancy-Aware Lightweight Detection for Tiny Objects in UAV Imagery See&Say: Vision Language Guided Safe Zone Detection for Autonomous Package Delivery Drones PAT-VCM: Plug-and-Play Auxiliary Tokens for Video Coding for Machines Bias at the End of the Score Deep Spatially-Regularized and Superpixel-Based Diffusion Learning for Unsupervised Hyperspectral Image Clustering The Spectrascapes Dataset: Street-view imagery beyond the visible captured using a mobile platform Why MLLMs Struggle to Determine Object Orientations Towards Successful Implementation of Automated Raveling Detection: Effects of Training Data Size, Illumination Difference, and Spatial Shift Right Regions, Wrong Labels: Semantic Label Flips in Segmentation under Correlation Shift SSD-GS: Scattering and Shadow Decomposition for Relightable 3D Gaussian Splatting SEDTalker: Emotion-Aware 3D Facial Animation Using Frame-Level Speech Emotion Diarization MSGS: Multispectral 3D Gaussian Splatting Multi-Agent Object Detection Framework Based on Raspberry Pi YOLO Detector and Slack-Ollama Natural Language Interface UniBlendNet: Unified Global, Multi-Scale, and Region-Adaptive Modeling for Ambient Lighting Normalization A Multimodal Clinically Informed Coarse-to-Fine Framework for Longitudinal CT Registration in Proton Therapy Why Multimodal In-Context Learning Lags Behind? 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PC-HMR: Pose Calibration for 3D Human Mesh Recovery from 2D Images/Videos
Tianyu Luan, Yali Wang, Junhao Zhang, Zhe Wang, Zhipeng Zhou, Yu · 2021-03-16 · via cs.CV updates on arXiv.org

The end-to-end Human Mesh Recovery (HMR) approach has been successfully used for 3D body reconstruction. However, most HMR-based frameworks reconstruct human body by directly learning mesh parameters from images or videos, while lacking explicit guidance of 3D human pose in visual data. As a result, the generated mesh often exhibits incorrect pose for complex activities. To tackle this problem, we propose to exploit 3D pose to calibrate human mesh. Specifically, we develop two novel Pose Calibration frameworks, i.e., Serial PC-HMR and Parallel PC-HMR. By coupling advanced 3D pose estimators and HMR in a serial or parallel manner, these two frameworks can effectively correct human mesh with guidance of a concise pose calibration module. Furthermore, since the calibration module is designed via non-rigid pose transformation, our PC-HMR frameworks can flexibly tackle bone length variations to alleviate misplacement in the calibrated mesh. Finally, our frameworks are based on generic and complementary integration of data-driven learning and geometrical modeling. Via plug-and-play modules, they can be efficiently adapted for both image/video-based human mesh recovery. Additionally, they have no requirement of extra 3D pose annotations in the testing phase, which releases inference difficulties in practice. We perform extensive experiments on the popular bench-marks, i.e., Human3.6M, 3DPW and SURREAL, where our PC-HMR frameworks achieve the SOTA results.