Brain water content provides rich tissue contrast comparable to that of longitudinal relaxation time T1, but mapping is usually performed at modest resolution. In particular, the slice thickness in 2D… Click to show full abstract
Brain water content provides rich tissue contrast comparable to that of longitudinal relaxation time T1, but mapping is usually performed at modest resolution. In particular, the slice thickness in 2D mapping methods is limited. Here, we combine super‐resolution reconstruction techniques with a fast water content mapping method to acquire high and isotropic resolution (0.75 mm) water content maps at 3 Tesla.
               
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