Log-Gabor Energy Based Multimodal Medical Image Fusion in NSCT Domain

Multimodal medical image fusion is a powerful tool in clinical applications such as noninvasive diagnosis, image-guided radiotherapy, and treatment planning. In this paper, a novel nonsubsampled Contourlet transform (NSCT) based method for multimodal medical image fusion is presented, which is appro...

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Main Authors: Yong Yang, Song Tong, Shuying Huang, Pan Lin
Format: Article
Language:English
Published: Hindawi Limited 2014-01-01
Series:Computational and Mathematical Methods in Medicine
Online Access:http://dx.doi.org/10.1155/2014/835481
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spelling doaj-d2b2d821b746443797c439a4e73769042020-11-24T21:02:24ZengHindawi LimitedComputational and Mathematical Methods in Medicine1748-670X1748-67182014-01-01201410.1155/2014/835481835481Log-Gabor Energy Based Multimodal Medical Image Fusion in NSCT DomainYong Yang0Song Tong1Shuying Huang2Pan Lin3School of Information Technology, Jiangxi University of Finance and Economics, Nanchang 330032, ChinaSchool of Information Technology, Jiangxi University of Finance and Economics, Nanchang 330032, ChinaSchool of Software and Communication Engineering, Jiangxi University of Finance and Economics, Nanchang 330032, ChinaInstitute of Biomedical Engineering, Xi’an Jiaotong University, Xi’an 710049, ChinaMultimodal medical image fusion is a powerful tool in clinical applications such as noninvasive diagnosis, image-guided radiotherapy, and treatment planning. In this paper, a novel nonsubsampled Contourlet transform (NSCT) based method for multimodal medical image fusion is presented, which is approximately shift invariant and can effectively suppress the pseudo-Gibbs phenomena. The source medical images are initially transformed by NSCT followed by fusing low- and high-frequency components. The phase congruency that can provide a contrast and brightness-invariant representation is applied to fuse low-frequency coefficients, whereas the Log-Gabor energy that can efficiently determine the frequency coefficients from the clear and detail parts is employed to fuse the high-frequency coefficients. The proposed fusion method has been compared with the discrete wavelet transform (DWT), the fast discrete curvelet transform (FDCT), and the dual tree complex wavelet transform (DTCWT) based image fusion methods and other NSCT-based methods. Visually and quantitatively experimental results indicate that the proposed fusion method can obtain more effective and accurate fusion results of multimodal medical images than other algorithms. Further, the applicability of the proposed method has been testified by carrying out a clinical example on a woman affected with recurrent tumor images.http://dx.doi.org/10.1155/2014/835481
collection DOAJ
language English
format Article
sources DOAJ
author Yong Yang
Song Tong
Shuying Huang
Pan Lin
spellingShingle Yong Yang
Song Tong
Shuying Huang
Pan Lin
Log-Gabor Energy Based Multimodal Medical Image Fusion in NSCT Domain
Computational and Mathematical Methods in Medicine
author_facet Yong Yang
Song Tong
Shuying Huang
Pan Lin
author_sort Yong Yang
title Log-Gabor Energy Based Multimodal Medical Image Fusion in NSCT Domain
title_short Log-Gabor Energy Based Multimodal Medical Image Fusion in NSCT Domain
title_full Log-Gabor Energy Based Multimodal Medical Image Fusion in NSCT Domain
title_fullStr Log-Gabor Energy Based Multimodal Medical Image Fusion in NSCT Domain
title_full_unstemmed Log-Gabor Energy Based Multimodal Medical Image Fusion in NSCT Domain
title_sort log-gabor energy based multimodal medical image fusion in nsct domain
publisher Hindawi Limited
series Computational and Mathematical Methods in Medicine
issn 1748-670X
1748-6718
publishDate 2014-01-01
description Multimodal medical image fusion is a powerful tool in clinical applications such as noninvasive diagnosis, image-guided radiotherapy, and treatment planning. In this paper, a novel nonsubsampled Contourlet transform (NSCT) based method for multimodal medical image fusion is presented, which is approximately shift invariant and can effectively suppress the pseudo-Gibbs phenomena. The source medical images are initially transformed by NSCT followed by fusing low- and high-frequency components. The phase congruency that can provide a contrast and brightness-invariant representation is applied to fuse low-frequency coefficients, whereas the Log-Gabor energy that can efficiently determine the frequency coefficients from the clear and detail parts is employed to fuse the high-frequency coefficients. The proposed fusion method has been compared with the discrete wavelet transform (DWT), the fast discrete curvelet transform (FDCT), and the dual tree complex wavelet transform (DTCWT) based image fusion methods and other NSCT-based methods. Visually and quantitatively experimental results indicate that the proposed fusion method can obtain more effective and accurate fusion results of multimodal medical images than other algorithms. Further, the applicability of the proposed method has been testified by carrying out a clinical example on a woman affected with recurrent tumor images.
url http://dx.doi.org/10.1155/2014/835481
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AT shuyinghuang loggaborenergybasedmultimodalmedicalimagefusioninnsctdomain
AT panlin loggaborenergybasedmultimodalmedicalimagefusioninnsctdomain
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