Phantom measurements under near-physiological conditions show that the ultra-low-field MR setup for neuronal current imaging requires at least a factor-of-2 SNR increase to detect long-lasting neuronal magnetic fields.
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Towards direct neuronal current imaging via ultra-low-field MR
Phantom measurements under near-physiological conditions show that the ultra-low-field MR setup for neuronal current imaging requires at least a factor-of-2 SNR increase to detect long-lasting neuronal magnetic fields.