• xmlui.mirage2.page-structure.header.title
    • français
    • English
  • Help
  • Login
  • Language 
    • Français
    • English
View Item 
  •   BIRD Home
  • CEREMADE (UMR CNRS 7534)
  • CEREMADE : Publications
  • View Item
  •   BIRD Home
  • CEREMADE (UMR CNRS 7534)
  • CEREMADE : Publications
  • View Item
JavaScript is disabled for your browser. Some features of this site may not work without it.

Browse

BIRDResearch centres & CollectionsBy Issue DateAuthorsTitlesTypeThis CollectionBy Issue DateAuthorsTitlesType

My Account

LoginRegister

Statistics

Most Popular ItemsStatistics by CountryMost Popular Authors
Thumbnail - No thumbnail

Geodesic Paths for Image Segmentation with Implicit Region-based Homogeneity Enhancement

Chen, Da; Zhu, Jian; Zhang, Xinxin; Shu, Minglei; Cohen, Laurent D. (2021), Geodesic Paths for Image Segmentation with Implicit Region-based Homogeneity Enhancement, IEEE Transactions on Image Processing, 30, p. 5138 - 5153. 10.1109/TIP.2021.3078106

Type
Article accepté pour publication ou publié
External document link
https://arxiv.org/pdf/2008.06909.pdf
Date
2021
Journal name
IEEE Transactions on Image Processing
Volume
30
Publisher
IEEE - Institute of Electrical and Electronics Engineers
Pages
5138 - 5153
Publication identifier
10.1109/TIP.2021.3078106
Metadata
Show full item record
Author(s)
Chen, Da
Shandong Artificial Intelligence Institute, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250014, China
Zhu, Jian
Shandong First Medical University
Zhang, Xinxin
The Chinese University of Hong Kong
Shu, Minglei
Shandong Artificial Intelligence Institute, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250014, China
Cohen, Laurent D.
CEntre de REcherches en MAthématiques de la DEcision [CEREMADE]
Abstract (EN)
Minimal paths are considered as a powerful and efficient tool for boundary detection and image segmentation due to its global optimality and well-established numerical solutions such as fast marching algorithm. In this paper, we introduce a flexible interactive image segmentation model based on the minimal geodesic framework in conjunction with region-based homogeneity enhancement. A key ingredient in our model is the construction of Finsler geodesic metrics, which are capable of integrating anisotropic and asymmetric edge features, region-based homogeneity and/or curvature regularization. This is done by exploiting an implicit method to incorporate the region-based homogeneity information to the metrics used. Moreover, we also introduce a way to build objective simple closed contours, each of which is treated as the concatenation of two disjoint open paths. Experimental results prove that the proposed model indeed outperforms state-of-the-art minimal paths-based image segmentation approaches.
Subjects / Keywords
Geodesic path; Eikonal equation; asymmetric Finsler metric; region-based homogeneity; interactive image segmentation

Related items

Showing items related by title and author.

  • Thumbnail
    A Region-based Randers Geodesic Approach for Image Segmentation 
    Cohen, Laurent D.; Chen, Da; Mirebeau, Jean-Marie; Shu, Minglei; Shu, Huazhong (2021) Document de travail / Working paper
  • Thumbnail
    A Region-based Randers Geodesic Approach for Image Segmentation 
    Cohen, Laurent D.; Chen, Da; Mirebeau, Jean-Marie; Shu, Ming-Lei; Shu, Huazhong (2021) Document de travail / Working paper
  • Thumbnail
    New Elastica Geodesic Approach with Convexity Shape Prior for Region-based Active Contours and Image Segmentation 
    Chen, Da; Mirebeau, Jean-Marie; Tai, Xue-Cheng; Cohen, Laurent D. (2021) Document de travail / Working paper
  • Thumbnail
    A Generalized Asymmetric Dual-front Model for Active Contours and Image Segmentation 
    Chen, Da; Spencer, Jack; Mirebeau, Jean-Marie; Chen, Ke; Shu, Minglei; Cohen, Laurent D. (2021) Article accepté pour publication ou publié
  • Thumbnail
    Geodesic curves for region-based segmentation 
    Cohen, Laurent D. (2016) Communication / Conférence
Dauphine PSL Bibliothèque logo
Place du Maréchal de Lattre de Tassigny 75775 Paris Cedex 16
Phone: 01 44 05 40 94
Contact
Dauphine PSL logoEQUIS logoCreative Commons logo