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Purpose
This study investigates metabolite concentrations using metabolite‐cycled 1H free induction decay (FID) magnetic resonance spectroscopic imaging (MRSI) at ultra‐high fields.
Methods
A non‐lipid‐suppressed and slice‐selective ultra‐short echo time (TE) 1H FID MRSI sequence was combined with a low‐specific absorption rate (SAR) asymmetric inversion adiabatic pulse to enable non‐water‐suppressed...
Purpose
Macromolecular resonances (MM) arise mainly from cytosolic proteins and overlap with metabolites, influencing metabolite quantification. Macromolecules can serve as valuable biomarkers for diseases and pathologies. The objectives of this study were to characterize MM at 9.4T in the human brain (occipital and left parietal lobe) and to describe the RF coil setup used for MM acquisition in...
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