Active contour model using fractional sinc wave function for medical image segmentation

Norshaliza Kamaruddin, (2016) Active contour model using fractional sinc wave function for medical image segmentation. Asia-Pacific Journal of Information Technology and Multimedia, 5 (2). pp. 47-61. ISSN 2289-2192

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Official URL: http://ejournals.ukm.my/apjitm/issue/view/871

Abstract

Intensity inhomogeneity occurs when pixels in medical images overlap due to anomalies in medical imaging devices. These anomalies lead to difficult medical image segmentation. This study proposes a new active contour model (ACM) with fractional sinc function to inexpensively segment medical images with intensity inhomogeneity. The method integrates a nonlinear fractional sinc function in its curve evolution and edge enhancement. The fractional sinc function contributes in giving a rapid contour movement where it improves the curve’s bending capability. Furthermore, the fractional sinc function enables the contour evolution to move toward the object based on the preserved edges. This study uses the proposed method to segment medical images with intensity inhomogeneity using five various image modalities. With improved speed, the proposed method more accurately segments medical images compared with other baseline methods.

Item Type:Article
Keywords:Level set method; Nonlinear diffusion; Active contour model; Distance measurement; Local or global properties
Journal:Asia - Pasific Journal of Information Technology and Multimedia (Formerly Jurnal Teknologi Maklumat dan Multimedia)
ID Code:10062
Deposited By: ms aida -
Deposited On:26 Jan 2017 01:04
Last Modified:01 Feb 2017 06:39

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