Title of article :
A Novel Multi-Layer Level Set Method for Image Segmentation
Author/Authors :
Wang, Xiao-Feng Hefei University - Department of Computer Scienceand Technology - Key Lab of Network and Intelligent Information Processing, China , Wang, Xiao-Feng Chinese Academy of Sciences - Hefei Institute of Intelligent Machines - Intelligent Computing Lab, China , Wang, Xiao-Feng University of Science and Technology of China - Department of Automation, China , Huang, De-Shuang Chinese Academy of Sciences - Hefei Institute of Intelligent Machines - Intelligent Computing Lab, China
From page :
2428
To page :
2452
Abstract :
In this paper, a new multi-layer level set method is proposed for multi-phase image segmentation. The proposed method is based on the conception of image layer and improved numerical solution of bimodal Chan-Vese model. One level set function is employed for curve evolution with a hierarchical form in sequential image layers. In addition, new initialization method and more efficient computational method for signed distance function are introduced. Moreover, the evolving curve can automatically stop on true boundaries in single image layer according to a termination criterion which is based on the length change of evolving curve. Specially, an adaptive improvement scheme is designed to speed up curve evolution process in a queue of sequential image layers, and the detection of background image layer is used to confirm the termination of the whole multi-layer level set evolution procedure. Finally, numerical experiments on some synthetic and real images have demonstrated the efficiency and robustness of our method. And the comparisons with multi-phase Chan-Vese method also show that our method has a less time-consuming computation and much faster convergence.
Keywords :
Curve evolution , Image layer , Level set , Multi , layer , Segmentation , Termination
Journal title :
Journal of J.UCS (Journal of Universal Computer Science)
Journal title :
Journal of J.UCS (Journal of Universal Computer Science)
Record number :
2661393
Link To Document :
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