Title of article
Active Contours Using Additive Local and Global Intensity Fitting Models for Intensity Inhomogeneous Image Segmentation
Author/Authors
Soomro, Shafiullah Department of Computer Science and Engineering - Chung-Ang University - Seoul, Republic of Korea , Akram, Farhan Department of Computer Engineering and Mathematics - Rovira i Virgili University - Tarragona, Spain , Kim, Jeong Heon Korea Institute of Science and Technology Information - Daejeon, Republic of Korea , Soomro, Toufique Ahmed School of Computing and Mathematics - Charles Sturt University - Bathurst, Australia , Choi, Kwang Nam Department of Computer Science and Engineering - Chung-Ang University - Seoul, Republic of Korea
Pages
15
From page
1
To page
15
Abstract
This paper introduces an improved region based active contour method with a level set formulation.The proposed energy functional
integrates both local and global intensity fitting terms in an additive formulation. Local intensity fitting term influences local force
to pull the contour and confine it to object boundaries. In turn, the global intensity fitting term drives the movement of contour at
a distance from the object boundaries. The global intensity term is based on the global division algorithm, which can better capture
intensity information of an image than Chan-Vese (CV) model. Both local and global terms are mutually assimilated to construct
an energy function based on a level set formulation to segment images with intensity inhomogeneity. Experimental results show
that the proposed method performs better both qualitatively and quantitatively compared to other state-of-the-art-methods.
Keywords
Global , Segmentation , Chan-Vese
Journal title
Computational and Mathematical Methods in Medicine
Serial Year
2016
Full Text URL
Record number
2606593
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