3DV and Geometry
Geometry
  • Shape Deformation and Editing
    • 1. DeformSyncNet: Deformation Transfer via Synchronized Shape Deformation Spaces
  • Shape Generation
    • 1. Learning Representations and Generative Models for 3D Point Clouds
    • 2. PolyGen: An Autoregressive Generative Model of 3D Meshes
    • 3. ParSeNet: A Parametric Surface Fitting Network for 3D Point Clouds
  • Single View Reconstruction
    • 1. DISN: Deep Implicit Surface Network for High-quality Single-view 3D Reconstruction
    • 2. Pixel2Mesh: Generating 3D Mesh Models from Single RGB Images
  • Geometry Feature Learning
    • 1. PointCNN
    • 2. PointNet
    • 3. MeshCNN: A Network with an Edge
    • 4. UV-Net: Learning from Curve-Networks and Solids
  • Differentiable Renderer
    • 1. Neural Rerendering in the Wild
    • 2. DFR: Differentiable Function Rendering for Learning 3D Generation from Images
  • Shape Analysis
    • 1. SymmetryNet: Learning to Predict Reflectional and Rotational Symmetries of 3D Shapes from Single-View RGB-D Images
    • 2. Symmetry in 3D Geometry: Extraction and Applications
    • 3. Discovering Structural Regularity in 3D Geometry
    • 4. PIE-NET: Parametric Inference of Point Cloud Edges
3D Vision
  • Localization
    • file1
    • file2
    • file3
    • I’m folder2
      • file1
      • file2
      • file3
      • I’m folder1
        • file1
        • file2
        • file3
  • Mapping
    • file1
    • file2
    • file3
    • I’m folder1
      • file1
      • file2
      • file3
3D Programming
  • Preliminary
    • 1. Generate a Shape from X
    • 2. Shape Editing
    • 3. Shape Analysis
    • 4. Special Topics on Face, Body and Facades
  • Advance
3DV and Geometry
  • Practice
  • README.md

3D Programming

  • Preliminary
    • Generate a Shape from X
    • Shape Editing
    • Shape Analysis
    • Special Topics on Face, Body and Facades
  • Advance

2020, 3dv-geometry