Title :
A Modified FCM Algorithm for MRI Brain Image Segmentation
Author :
Wang, Ping ; Wang, HongLei
Author_Institution :
Dept. Electron. Inf. Eng., Nanchang Univ., Nanchang
Abstract :
Image segmentation is often required as a preliminary and indispensable stage in the computer aided medical image process, particularly during the clinical analysis of magnetic resonance (MR) brain image. Fuzzy c-means (FCM) clustering algorithm has been widely used in many medical image segmentations. However, the conventionally standard FCM algorithm is sensitive to noise because of not taking into account the spatial information. To overcome the above problem, a modified FCM algorithm (called mFCM later) for MRI brain image segmentation is presented in this paper. The algorithm is realized by incorporating the spatial neighborhood information into the standard FCM algorithm and modifying the membership weighting of each cluster. The proposed algorithm is applied to both artificial synthesized image and real image. Segmentation results not only on synthesized image but also MRI brain image which degraded by Gaussian noise and salt-pepper noise demonstrates that the presented algorithm performs more robust to noise than the standard FCM algorithm.
Keywords :
Gaussian noise; biomedical MRI; image segmentation; medical image processing; pattern clustering; Gaussian noise; MRI brain image segmentation; artificial synthesized image; clinical analysis; computer aided medical image process; fuzzy c-means clustering algorithm; magnetic resonance imaging; membership weighting; modified FCM algorithm; real image; salt-pepper noise; spatial neighborhood information; Biomedical imaging; Brain; Clinical diagnosis; Clustering algorithms; Degradation; Gaussian noise; Image segmentation; Magnetic noise; Magnetic resonance; Magnetic resonance imaging; Fuzzy c-means (FCM); MRI; image segmentation; membership function; spatial information;
Conference_Titel :
Future BioMedical Information Engineering, 2008. FBIE '08. International Seminar on
Conference_Location :
Wuhan, Hubei
Print_ISBN :
978-0-7695-3561-6
DOI :
10.1109/FBIE.2008.12