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Grading of gliomas by using monoexponential, biexponential, and stretched exponential diffusion-weighted mr imaging and diffusion kurtosis MR imaging

  • Yan Bai
  • , Yusong Lin
  • , Jie Tian
  • , Dapeng Shi
  • , Jingliang Cheng
  • , E. Mark Haacke
  • , Xiaohua Hong
  • , Bo Ma
  • , Jinyuan Zhou
  • , Meiyun Wang*
  • *此作品的通讯作者
  • Zhengzhou University
  • CAS - Institute of Automation
  • The First Affiliated Hospital of Zhengzhou University
  • Wayne State University
  • Magnetic Resonance Innovations, Inc.
  • Johns Hopkins University

科研成果: 期刊稿件文章同行评审

摘要

Purpose: To quantitatively compare the potential of various diffusion parameters obtained from monoexponential, biexponential, and stretched exponential diffusion-weighted imaging models and diffusion kurtosis imaging in the grading of gliomas. Materials and Methods: This study was approved by the local ethics committee, and written informed consent was obtained from all subjects. Both diffusion-weighted imaging and diffusion kurtosis imaging were performed in 69 patients with pathologically proven gliomas by using a 3-T magnetic resonance (MR) imaging unit. An isotropic apparent diffusion coefficient (ADC), true ADC, pseudo- ADC, and perfusion fraction were calculated from diffusionweighted images by using a biexponential model. A water molecular diffusion heterogeneity index and distributed diffusion coefficient were calculated from diffusion-weighted images by using a stretched exponential model. Mean diffusivity, fractional anisotropy, and mean kurtosis were calculated from diffusion kurtosis images. All values were compared between high-grade and low-grade gliomas by using a Mann-Whitney U test. Receiver operating characteristic and Spearman rank correlation analysis were used for statistical evaluations. Results: ADC, true ADC, perfusion fraction, water molecular diffusion heterogeneity index, distributed diffusion coefficient, and mean diffusivity values were significantly lower in high-grade gliomas than in low-grade gliomas (U = 109, 56, 129, 6, 206, and 229, respectively; P <05). Pseudo-ADC and mean kurtosis values were significantly higher in high-grade gliomas than in low-grade gliomas (U = 98 and 8, respectively; P <05). Both water molecular diffusion heterogeneity index (area under the receiver operating characteristic curve [AUC] = 0.993) and mean kurtosis (AUC = 0.991) had significantly greater AUC values than ADC (AUC = 0.866), mean diffusivity (AUC = 0.722), and fractional anisotropy (AUC = 0.500) in the differentiation of low-grade and high-grade gliomas (P <05). Conclusion: Water molecular diffusion heterogeneity index and mean kurtosis values may provide additional information and improve the grading of gliomas compared with conventional diffusion parameters.

源语言英语
页(从-至)496-504
页数9
期刊Radiology
278
2
DOI
出版状态已出版 - 2月 2016
已对外发布

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