Topologically Consistent Multi-View Face Inference Using Volumetric Sampling
Tianye Li, Shichen Liu, Timo Bolkart, Jiayi Liu, Hao Li, and Yajie Zhao

TL;DR
ToFu introduces a volumetric-based, topologically consistent face inference framework that produces accurate, detailed 3D facial meshes rapidly, surpassing traditional methods in speed and robustness without relying on explicit 3D morphable models.
Contribution
The paper presents a novel volumetric representation and progressive mesh generation network that ensures topological consistency and high detail in 3D face reconstruction, handling extreme expressions effectively.
Findings
State-of-the-art geometric accuracy achieved
Meshes generated in 0.385 seconds for 10K vertices
Outperforms traditional techniques in speed and robustness
Abstract
High-fidelity face digitization solutions often combine multi-view stereo (MVS) techniques for 3D reconstruction and a non-rigid registration step to establish dense correspondence across identities and expressions. A common problem is the need for manual clean-up after the MVS step, as 3D scans are typically affected by noise and outliers and contain hairy surface regions that need to be cleaned up by artists. Furthermore, mesh registration tends to fail for extreme facial expressions. Most learning-based methods use an underlying 3D morphable model (3DMM) to ensure robustness, but this limits the output accuracy for extreme facial expressions. In addition, the global bottleneck of regression architectures cannot produce meshes that tightly fit the ground truth surfaces. We propose ToFu, Topologically consistent Face from multi-view, a geometry inference framework that can produce…
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Taxonomy
TopicsFace recognition and analysis · 3D Shape Modeling and Analysis · Advanced Vision and Imaging
MethodsTofu
