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April 1, 2026Computer Graphics Forum1 citations

Field‐Aligned Surface‐Filling Curve via Implicit Stitching

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GCG. Di CoccoXCXavier Chermain

Key Points

  • The goal is to create a scalable method for generating field-aligned surface-filling curves on various manifolds.
  • Introduced a new implicit stitching strategy for manipulating scalar fields directly.
  • Built upon previous techniques for stripe pattern generation and surface-filling curves.
  • Validated method efficiency on the Thingi10K dataset and integrated with Blender 4.5.
  • Achieved over an order of magnitude increase in speed compared to traditional geometric flow methods.
  • Enhanced alignment with input direction fields.
  • Successfully produced models with over ten million vertices in under twenty-five minutes.

Abstract

Abstract We present a robust and scalable method for generating field‐aligned surface‐filling curves on general manifolds. Building upon prior work on stripe pattern generation and field‐aligned surface‐filling curves, our approach introduces a novel stitching strategy that operates directly in the implicit domain. Unlike previous methods that extract and stitch isolines post hoc, we perform stitching by manipulating the scalar field itself, enabling an efficient and robust solution that generalizes beyond planar surfaces. We demonstrate more than an order of magnitude speed‐up and improved alignment with input direction fields when compared to state‐of‐the‐art geometric flow methods. Robustness is validated on the Thingi10K dataset. Moreover, the method integrates with Blender 4.5 for interactive curve generation on small models, and scales to massive meshes – producing surface‐filling curves with over ten million vertices in under twenty‐five minutes.

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Cite This Study

Cocco et al. (2026) studied this question.

synapsesocial.com/papers/69ccb6b416edfba7beb886d1https://doi.org/10.1111/cgf.70361
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