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Updated: Aug 14, 2026

Three-Dimensional Shape Modeling and Analysis of Brain Structures
Published on: November 14, 2019
Sharpen&Bend: recovering curved sharp edges in triangle meshes produced by feature-insensitive sampling
Marco Attene1, Bianca Falcidieno, Jarek Rossignac
1Istituto di Matematica Applicata e Tecnologie Informatiche, sez di Genova, Consiglio Nazionale delle Ricerche, Via De Marini 6, Torre di Francia, 16149, Genova, Italy. attene@ge.imati.cnr.it
New filters enhance 3D shape models by restoring sharp edges and smoothing curves. This postprocessing significantly reduces errors from uniform sampling, improving mesh quality and accuracy.
Area of Science:
- Computer Graphics
- Geometric Modeling
- 3D Shape Analysis
Background:
- Current 3D shape sampling methods often ignore surface features like sharp edges.
- Uniform sampling leads to inaccurate triangle meshes that chamfer features and increase error.
- Existing resampling techniques struggle to preserve geometric fidelity, especially around critical features.
Purpose of the Study:
- To introduce novel postprocessing filters for improving the quality of resampled 3D models.
- To address the limitations of feature-insensitive sampling in 3D shape acquisition and analysis.
- To reduce geometric distortion and enhance feature representation in reconstructed 3D meshes.
Main Methods:
- Developed 'EdgeSharpener' filter to restore sharp edges by re-calculating vertex positions.
- Introduced 'Bender' filter using an interpolating subdivision scheme to refine meshes and smooth curves.
- Combined 'EdgeSharpener' and 'Bender' filters for comprehensive postprocessing (Sharpen&Bend).
Main Results:
- EdgeSharpener alone reduced mean-squared distortion by up to 80% for SwingWrapper compressor output.
- The combined Sharpen&Bend approach further reduced error by an additional 60% for models with curved regions.
- Significant improvements in mesh accuracy and feature preservation were observed compared to standard resampling.
Conclusions:
- The Sharpen&Bend postprocessing effectively mitigates errors introduced by uniform sampling of 3D shapes.
- These filters provide a robust solution for enhancing the quality of 3D models derived from various acquisition methods.
- The proposed methods significantly improve geometric fidelity, particularly for models with sharp and curved features.
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