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Hayko Riemenschneider

5 accepted papers

2024

BetterDepth: Plug-and-Play Diffusion Refiner for Zero-Shot Monocular Depth Estimation

NeurIPS 2024poster

By training over large-scale datasets, zero-shot monocular depth estimation (MDE) methods show robust performance in the wild but often suffer from insufficient detail. Although recent diffusion-based MDE approaches exhibit a superior ability to extract details, they struggle in geometrically comple…

Cited by 7SourcePDFScholar
2024

QUADify: Extracting Meshes with Pixel-level Details and Materials from Images

CVPR 2024highlight

Despite exciting progress in automatic 3D reconstruction from images excessive and irregular triangular faces in the resulting meshes still constitute a significant challenge when it comes to adoption in practical artist workflows. Therefore we propose a method to extract regular quad-dominant meshe…

Cited by 0SourcePDFScholar
2018

Consensus Maximization for Semantic Region Correspondences

CVPR 2018poster

We propose a novel method for the geometric registration of semantically labeled regions. We approximate semantic regions by ellipsoids, and leverage their convexity to formulate the correspondence search effectively as a constrained optimization problem that maximizes the number of matched regions,…

Cited by 8SourcePDFScholar
2015

3D All The Way: Semantic Segmentation of Urban Scenes From Start to End in 3D

CVPR 2015poster

We propose a new approach for semantic segmentation of 3D city models. Starting from an SfM reconstruction of a street-side scene, we perform classification and facade splitting purely in 3D, obviating the need for slow image-based semantic segmentation methods. We show that a properly trained pure-…

Cited by 165SourcePDFScholar
2015

Superpixel Meshes for Fast Edge-Preserving Surface Reconstruction

CVPR 2015poster

Multi-View-Stereo (MVS) methods aim for the highest detail possible, however, such detail is often not required. In this work, we propose a novel surface reconstruction method based on image edges, superpixels and second-order smoothness constraints, producing meshes comparable to classic MVS surfac…

Cited by 71SourcePDFScholar