Brain function has been investigated via the blood oxygenation level dependent (BOLD) effect using magnetic resonance imaging (MRI) for the past decades. Advances in sodium imaging offer the unique chance to access signal changes directly linked to sodium ions (23Na) flux across the cell membrane, which generates action potentials, hence signal transmission in the brain. During this process 23Na transiently accumulates in the intracellular space. Here we show that quantitative functional sodium imaging (fNaI) at 3T is potentially sensitive to 23Na concentration changes during finger tapping, which can be quantified in gray and white matter regions key to motor function. For the first time, we measured a 23Na concentration change of 0.54 mmo...
Sodium is the second most abundant MR-active nucleus in the human body and is of fundamental importa...
Sodium is the second most abundant MR-active nucleus in the human body and is of fundamental importa...
Sodium is the second most abundant MR-active nucleus in the human body and is of fundamental importa...
Brain function has been investigated via the blood oxygenation level dependent (BOLD) effect using m...
Brain function has been investigated via the blood oxygenation level dependent (BOLD) effect using m...
Brain function has been investigated via the blood oxygenation level dependent (BOLD) effect using m...
Brain function has been investigated via the blood oxygenation level dependent (BOLD) effect using m...
Brain function has been investigated via the blood oxygenation level dependent (BOLD) effect using m...
International audienceA novel magnetic resonance imaging (MRI) acquisition and reconstruction method...
International audienceA novel magnetic resonance imaging (MRI) acquisition and reconstruction method...
International audienceA novel magnetic resonance imaging (MRI) acquisition and reconstruction method...
International audienceSodium (23 Na) MRI proffers the possibility of novel information for neurologi...
International audienceSodium (23 Na) MRI proffers the possibility of novel information for neurologi...
International audienceSodium (23 Na) MRI proffers the possibility of novel information for neurologi...
Sodium magnetic resonance imaging (23Na-MRI) is a highly promising imaging modality that offers the ...
Sodium is the second most abundant MR-active nucleus in the human body and is of fundamental importa...
Sodium is the second most abundant MR-active nucleus in the human body and is of fundamental importa...
Sodium is the second most abundant MR-active nucleus in the human body and is of fundamental importa...
Brain function has been investigated via the blood oxygenation level dependent (BOLD) effect using m...
Brain function has been investigated via the blood oxygenation level dependent (BOLD) effect using m...
Brain function has been investigated via the blood oxygenation level dependent (BOLD) effect using m...
Brain function has been investigated via the blood oxygenation level dependent (BOLD) effect using m...
Brain function has been investigated via the blood oxygenation level dependent (BOLD) effect using m...
International audienceA novel magnetic resonance imaging (MRI) acquisition and reconstruction method...
International audienceA novel magnetic resonance imaging (MRI) acquisition and reconstruction method...
International audienceA novel magnetic resonance imaging (MRI) acquisition and reconstruction method...
International audienceSodium (23 Na) MRI proffers the possibility of novel information for neurologi...
International audienceSodium (23 Na) MRI proffers the possibility of novel information for neurologi...
International audienceSodium (23 Na) MRI proffers the possibility of novel information for neurologi...
Sodium magnetic resonance imaging (23Na-MRI) is a highly promising imaging modality that offers the ...
Sodium is the second most abundant MR-active nucleus in the human body and is of fundamental importa...
Sodium is the second most abundant MR-active nucleus in the human body and is of fundamental importa...
Sodium is the second most abundant MR-active nucleus in the human body and is of fundamental importa...