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  4. A Latent Implicit 3D Shape Model for Multiple Levels of Detail
 
conference paper

A Latent Implicit 3D Shape Model for Multiple Levels of Detail

Guillard, Benoît  
•
Habermann, Marc
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Theobalt, Christian
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Cremers, Daniel
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Lähner, Zorah
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2025
Pattern Recognition - 46th DAGM German Conference, DAGM GCPR 2024, Munich, Germany, September 10-13, 2024. Proceedings, Part II
46th Annual Conference of the German Association for Pattern Recognition (DAGM GCPR 2024)

Implicit neural representations map a shape-specific latent code and a 3D coordinate to its corresponding signed distance (SDF) value. However, this approach only offers a single level of detail. Emulating low levels of detail can be achieved with shallow networks, but the generated shapes are typically not smooth. Alternatively, some network designs offer multiple levels of detail, but are limited to overfitting a single object. To address this, we propose a new shape modeling approach, which enables multiple levels of detail and guarantees a smooth surface at each level. At the core, we introduce a novel latent conditioning for a multiscale and bandwith-limited neural architecture. This results in a deep parameterization of multiple shapes, where early layers quickly output approximated SDF values. This allows to balance speed and accuracy within a single network and enhance the efficiency of implicit scene rendering. We demonstrate that by limiting the bandwidth of the network, we can maintain smooth surfaces across all levels of detail. At finer levels, reconstruction quality is on par with the state of the art models, which are limited to a single level of detail.

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