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PSHuman: Photorealistic Single-image 3D Human Reconstruction using Cross-Scale Multiview Diffusion and Explicit Remeshing

16 September 2024
Peng Li
Wangguandong Zheng
Yuan Liu
Tao Yu
Yangguang Li
Xingqun Qi
Mengfei Li
Xiaowei Chi
Siyu Xia
Wei Xue
Wenhan Luo
Yike Guo
    3DGS
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Abstract

Detailed and photorealistic 3D human modeling is essential for various applications and has seen tremendous progress. However, full-body reconstruction from a monocular RGB image remains challenging due to the ill-posed nature of the problem and sophisticated clothing topology with self-occlusions. In this paper, we propose PSHuman, a novel framework that explicitly reconstructs human meshes utilizing priors from the multiview diffusion model. It is found that directly applying multiview diffusion on single-view human images leads to severe geometric distortions, especially on generated faces. To address it, we propose a cross-scale diffusion that models the joint probability distribution of global full-body shape and local facial characteristics, enabling detailed and identity-preserved novel-view generation without any geometric distortion. Moreover, to enhance cross-view body shape consistency of varied human poses, we condition the generative model on parametric models like SMPL-X, which provide body priors and prevent unnatural views inconsistent with human anatomy. Leveraging the generated multi-view normal and color images, we present SMPLX-initialized explicit human carving to recover realistic textured human meshes efficiently. Extensive experimental results and quantitative evaluations on CAPE and THuman2.1 datasets demonstrate PSHumans superiority in geometry details, texture fidelity, and generalization capability.

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@article{li2025_2409.10141,
  title={ PSHuman: Photorealistic Single-image 3D Human Reconstruction using Cross-Scale Multiview Diffusion and Explicit Remeshing },
  author={ Peng Li and Wangguandong Zheng and Yuan Liu and Tao Yu and Yangguang Li and Xingqun Qi and Xiaowei Chi and Siyu Xia and Yan-Pei Cao and Wei Xue and Wenhan Luo and Yike Guo },
  journal={arXiv preprint arXiv:2409.10141},
  year={ 2025 }
}
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