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Instant recovery of shape from spectrum via latent space connections

  • Riccardo Marin
  • , Arianna Rampini
  • , Umberto Castellani
  • , Emanuele Rodola
  • , Maks Ovsjanikov
  • , Simone Melzi
  • University of Verona
  • University of Rome

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Résumé

We introduce the first learning-based method for recovering shapes from Laplacian spectra. Our model consists of a cycle-consistent module that maps between learned latent vectors of an auto-encoder and sequences of eigenvalues. This module provides an efficient and effective linkage between Laplacian spectrum and geometry. Our data-driven approach replaces the need for ad-hoc regularizers required by prior methods, while providing more accurate results at a fraction of the computational cost. Our learning model applies without modifications across different dimensions (2D and 3D shapes alike), representations (meshes, contours and point clouds), as well as across different shape classes, and admits arbitrary resolution of the input spectrum without affecting complexity. The increased flexibility allows us to address notoriously difficult tasks in 3D vision and geometry processing within a unified framework, including shape generation from spectrum, mesh super-resolution, shape exploration, style transfer, spectrum estimation from point clouds, segmentation transfer and point-to-point matching.

langue originaleAnglais
titreProceedings - 2020 International Conference on 3D Vision, 3DV 2020
EditeurInstitute of Electrical and Electronics Engineers Inc.
Pages120-129
Nombre de pages10
ISBN (Electronique)9781728181288
Les DOIs
étatPublié - 1 nov. 2020
Evénement8th International Conference on 3D Vision, 3DV 2020 - Virtual, Fukuoka, Japon
Durée: 25 nov. 202028 nov. 2020

Série de publications

NomProceedings - 2020 International Conference on 3D Vision, 3DV 2020

Une conférence

Une conférence8th International Conference on 3D Vision, 3DV 2020
Pays/TerritoireJapon
La villeVirtual, Fukuoka
période25/11/2028/11/20

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