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Updated: May 27, 2025

Quantitative Magnetic Resonance Imaging of Skeletal Muscle Disease
Published on: December 18, 2016
Interpretation of inhomogeneous magnetization transfer in myelin water using a four-pool model with dipolar
Michelle H Lam1,2,3, Masha Novoselova1,2,4, Andrew Yung2
1Physics and Astronomy, University of British Columbia, British Columbia, Vancouver, Canada.
Purpose:
To confirm ihMT's specificity to myelin, an ihMT presaturation module was combined with a Poon-Henkelman multi-echo spin-echo readout to separate the ihMT signal in myelin water from intra-/extra-cellular water. This study explored the relationship between two quantitative myelin imaging techniques and measured the ihMT signal of myelin water.
Methods:
Six rats were injured; three were sacrificed three weeks post-injury, and three were sacrificed eight weeks post-injury, and three healthy control rats were also sacrificed. The nine formalin-fixed rat spinal cords were imaged using a Poon-Henkelman multi-echo spin-echo readout with an ihMT prepulse at different strengths of filtering at 7T.
Results:
The proposed model was able to characterize the ihMT decay signal in myelin water and intra-/extra-cellular water pool. From this proposed four-pool model with dipolar order reservoirs, we see a drop in the fit parameter in the fasciculus gracilis white matter region of the three-week post-injury cord. and (non-myelin) were estimated to be approx. 8 and 1.5 ms, respectively.
Conclusion:
The drop in in the three-week post-injury cords suggests that could potentially distinguish between functional myelin and myelin debris; however, more studies are needed to confirm this.
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