• Neuroradiology · Apr 2020

    Scan-rescan and inter-vendor reproducibility of neurite orientation dispersion and density imaging metrics.

    • Christina Andica, Koji Kamagata, Takuya Hayashi, Akifumi Hagiwara, Wataru Uchida, Yuya Saito, Kouhei Kamiya, Shohei Fujita, Toshiaki Akashi, Akihiko Wada, Masahiro Abe, Hiroshi Kusahara, Masaaki Hori, and Shigeki Aoki.
    • Department of Radiology, Juntendo University Graduate School of Medicine, Tokyo, Japan. christina@juntendo.ac.jp.
    • Neuroradiology. 2020 Apr 1; 62 (4): 483-494.

    PurposeThe reproducibility of neurite orientation dispersion and density imaging (NODDI) metrics in the human brain has not been explored across different magnetic resonance (MR) scanners from different vendors. This study aimed to evaluate the scan-rescan and inter-vendor reproducibility of NODDI metrics in white and gray matter of healthy subjects using two 3-T MR scanners from two vendors.MethodsTen healthy subjects (7 males; mean age 30 ± 7 years, range 23-37 years) were included in the study. Whole-brain diffusion-weighted imaging was performed with b-values of 1000 and 2000 s/mm2 using two 3-T MR scanners from two different vendors. Automatic extraction of the region of interest was performed to obtain NODDI metrics for whole and localized areas of white and gray matter. The coefficient of variation (CoV) and intraclass correlation coefficient (ICC) were calculated to assess the scan-rescan and inter-vendor reproducibilities of NODDI metrics.ResultsThe scan-rescan and inter-vendor reproducibility of NODDI metrics (intracellular volume fraction and orientation dispersion index) were comparable with those of diffusion tensor imaging (DTI) metrics. However, the inter-vendor reproducibilities of NODDI (CoV = 2.3-14%) were lower than the scan-rescan reproducibility (CoV: scanner A = 0.8-3.8%; scanner B = 0.8-2.6%). Compared with the finding of DTI metrics, the reproducibility of NODDI metrics was lower in white matter and higher in gray matter.ConclusionThe lower inter-vendor reproducibility of NODDI in some brain regions indicates that data acquired from different MRI scanners should be carefully interpreted.

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