Textured Mesh Saliency: Bridging Geometry and Texture for Human Perception in 3D Graphics
Kaiwei Zhang, Dandan Zhu, Xiongkuo Min, Guangtao Zhai
Abstract
Textured meshes significantly enhance the realism and detail of objects by mapping intricate texture details onto the geometric structure of 3D models. This advancement is valuable across various applications, including entertainment, education, and industry. While traditional mesh saliency studies focus on non-textured meshes, our work explores the complexities introduced by detailed texture patterns. We present a new dataset for textured mesh saliency, created through an innovative eye-tracking experiment in a six degrees of freedom (6-DOF) VR environment. This dataset addresses the limitations of previous studies by providing comprehensive eye-tracking data from multiple viewpoints, thereby advancing our understanding of human visual behavior and supporting more accurate and effective 3D content creation. Our proposed model predicts saliency maps for textured mesh surfaces by treating each triangular face as an individual unit and assigning a saliency density value to reflect the importance of each local surface region. The model incorporates a texture alignment module and a geometric extraction module, combined with an aggregation module to integrate texture and geometry for precise saliency prediction. We believe this approach will enhance the visual fidelity of geometric processing while ensuring computational efficiency, essential for real-time rendering and high-detail applications such as VR and gaming.
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Cited by top-tier papers2
- SalDiff-DTM: A Novel Dual-Temporal Modulated Diffusion Model for Omnidirectional Images Scanpath PredictionXiaohui Kong, Qian Liu, Dandan Zhu, Kaiwei Zhang et al.AAAI 2026
- Mesh Mamba: A Unified State Space Model for Saliency Prediction in Non-Textured and Textured MeshesKaiwei Zhang, Dandan Zhu, Xiongkuo Min, Guangtao ZhaiCVPR 2025
Builds on5
- Stratified Transformer for 3D Point Cloud SegmentationXin Lai, Jianhui Liu, Li Jiang, Liwei Wang et al.CVPR 2022 · 494 citations
- MeshNet++: A Network with a FaceVinit Veerendraveer Singh, Shivanand Venkanna Sheshappanavar, Chandra KambhamettuACM MM 2021 · 25 citations
- Point TransformerHengshuang Zhao, Li Jiang, Jiaya Jia, Philip H. S. Torr et al.ICCV 2021 · 23 citations
- Mesh Saliency: An Independent Perceptual Measure or a Derivative of Image Saliency?Ran Song, Wei Zhang, Yitian Zhao, Yonghuai Liu et al.CVPR 2021
- Learning Continuous Image Representation With Local Implicit Image FunctionYinbo Chen, Sifei Liu, Xiaolong WangCVPR 2021
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