Fully Automated Pipeline for Quantification and Localization of White Matter Hyperintensity in Brain Magnetic Resonance Image

  • Jeon, Seun
  • Yoon, Uicheul
  • Park, Jun-Sung
  • Seo, Sang Won
  • Kim, Jung-Hyun
  • ... Lee, Jong-Min
  • 외 3명
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초록

Automated white matter hyperintensity (WMH) segmentation on magnetic resonance imaging is greatly advantageous for various clinical studies using large-sample data. Accurate localization of WMH can provide more beneficial information for clinical studies, as differences of regional WMH existence may be linked to clinical symptoms. We suggest a fully automated method for WMH quantification and localization without human interaction using T1-weighted and fluid-attenuated inversion-recovery (FLAIR) images. The known sources of false-positive results in the subarachnoid space and brain-cerebrospinal fluid (CSF) interface were removed by applying a WMH candidate-region mask. WMH segmentation was performed based on the Markov random field model. The intensity-substitution method was developed for the accurate localization of WMH, with proper tissue classification and nonlinear registration. The performance of the method was evaluated via comparison with manual delineation; the similarity index and the overlap ratio were 89.94 and 81.90, respectively. (C) 2011 Wiley Periodicals, Inc. Int J Imaging Syst Technol, 21, 193-200, 2011; Published online in Wiley Online Library (wileyonlinelibrary.com). DOI 10.1002/ima.20277

키워드

magnetic resonance imagingwhite matter hyperintensity segmentationregional parcellationintensity-substitutionMILD COGNITIVE IMPAIRMENTQUANTITATIVE FOLLOW-UPVASCULAR RISK-FACTORSMR-IMAGESSUBARACHNOID SPACESIGNAL INTENSITYLESIONSSEGMENTATIONDEMENTIAFLUID
제목
Fully Automated Pipeline for Quantification and Localization of White Matter Hyperintensity in Brain Magnetic Resonance Image
저자
Jeon, SeunYoon, UicheulPark, Jun-SungSeo, Sang WonKim, Jung-HyunKim, Sung TaeKim, Sun I.Na, Duk L.Lee, Jong-Min
DOI
10.1002/ima.20277
발행일
2011-05
유형
Article
저널명
International Journal of Imaging Systems and Technology
21
2
페이지
193 ~ 200