• J Magn Reson Imaging · Jan 2019

    Ultra-high-b radial diffusion-weighted imaging (UHb-rDWI) of human cervical spinal cord.

    • Bijaya Thapa, Nabraj Sapkota, YouJung Lee, Kyle Jeong, John Rose, Lubdha M Shah, Erica Bisson, and Eun-Kee Jeong.
    • Utah Center for Advanced Imaging Research, University of Utah, Salt Lake City, Utah, USA.
    • J Magn Reson Imaging. 2019 Jan 1; 49 (1): 204-211.

    BackgroundInjury in the cervical spinal cord (CSC) can lead to varying degrees of neurologic deficit and persistent disability. Diffusion tensor imaging (DTI) is a promising method to evaluate white matter integrity and pathology. However, the conventional DTI results are limited with respect to the specific details of neuropathology and microstructural architecture. In this study we used ultrahigh-b radial-DWI (UHb-rDWI) with b-values ranging from 0 to ∼7500 s/mm2 and calculated decay constant (DH ) at the high b-values, which gives much deeper insight about the microscopic environment of CSC white matter.PurposeTo evaluate a novel diffusion MRI, UHb-rDWI technique for imaging of the CSC.Study TypeLongitudinal.SubjectsFour healthy controls, each scanned twice.Field Strength/Sequence3T/2D single shot diffusion-weighted stimulated echo planar imaging with reduced field of view.AssessmentThe signal from each pixel of b0 (b = 0) and b-value (b ≠ 0) images were fitted to a biexponential function and normalized. The signal-b curve is obtained by dividing the latter curve by the former. DH was obtained from the curve at b >4000 s/mm2 . A Monte-Carlo Simulation (MCS) was performed to investigate how DH changes upon the increased water-exchange at the CSC.ResultsThe signal-b curves plotted at multiple levels of healthy CSC are almost identical on two successive scans and show a biexponential decay behavior: fast exponential decay at lower b-values and much slower decay at UHb-values. The mean values of DH were measured as (0.0607 ± 0.02531) ×10-3 and (0.0357 ± 0.02072) ×10-3 s/mm2 at the lateral funiculus and posterior column, respectively. MCS of diffusion MRI shows that the DH is elevated by increased water exchange between the intra- and extraaxonal spaces.Data ConclusionUHb-rDWI signal-b plots of the normal CSC were highly reproducible on successive scans and their biexponential decay behavior can be used to characterize normal spinal white matter.Level Of Evidence2 Technical Efficacy: Stage 1 J. Magn. Reson. Imaging 2019;49:204-211.© 2018 International Society for Magnetic Resonance in Medicine.

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