Shape Priors for Level Set Representations

Abstract

Level Set Representations, the pioneering framework introduced by Osher and Sethian [ 14 ] is the most common choice for the implementation of variational frameworks in Computer Vision since it is implicit, intrinsic, parameter and topology free. However, many Computer vision applications refer to entities with physical meanings that follow a shape form with a certain degree of variability. In this paper, we propose a novel energetic form to introduce shape constraints to level set representations. This formulation exploits all advantages of these representations resulting on a very elegant approach that can deal with a large number of parametric as well as continuous transformations. Furthermore, it can be combined with existing well known level set-based segmentation approaches leading to paradigms that can deal with noisy, occluded and missing or physically corrupted data. Encouraging experimental results are obtained using synthetic and real images.

Cite

Text

Rousson and Paragios. "Shape Priors for Level Set Representations." European Conference on Computer Vision, 2002. doi:10.1007/3-540-47967-8_6

Markdown

[Rousson and Paragios. "Shape Priors for Level Set Representations." European Conference on Computer Vision, 2002.](https://mlanthology.org/eccv/2002/rousson2002eccv-shape/) doi:10.1007/3-540-47967-8_6

BibTeX

@inproceedings{rousson2002eccv-shape,
  title     = {{Shape Priors for Level Set Representations}},
  author    = {Rousson, Mikaël and Paragios, Nikos},
  booktitle = {European Conference on Computer Vision},
  year      = {2002},
  pages     = {78-92},
  doi       = {10.1007/3-540-47967-8_6},
  url       = {https://mlanthology.org/eccv/2002/rousson2002eccv-shape/}
}