Through significant developments and progresses in the last two decades, in vivo localized nuclear magnetic resonance spectroscopy (MRS) became a method of choice to probe brain metabolic pathways in a non-invasive way. Beside the measurement of the total concentration of more than 20 metabolites, (1)H MRS can be used to quantify the dynamics of substrate transport across the blood-brain barrier by varying the plasma substrate level. On the other hand, (13)C MRS with the infusion of (13)C-enriched substrates enables the characterization of brain oxidative metabolism and neurotransmission by incorporation of (13)C in the different carbon positions of amino acid neurotransmitters. The quantitative determination of the biochemical reactions in...
Astrocytes have recently become a major center of interest in neurochemistry with the discoveries on...
The measurement of metabolism-related processes in vivo is a critical prerequisite for a better unde...
The combination of dynamic (13)C MRS data under infusion of (13)C-labelled substrates and compartmen...
The combination of dynamic (13)C MRS data under infusion of (13)C-labeled substrates and compartment...
Cerebral function is associated with exceptionally high metabolic activity, and requires continuous ...
Carbon-13 nuclear magnetic resonance spectroscopy in combination with the infusion of (13)C-labeled ...
(13)C magnetic resonance spectroscopy (MRS) combined with the administration of (13)C labeled substr...
Cerebral function is associated with high metabolic activity that is supported by continuous supply ...
Localized 13C nuclear magnetic resonance (NMR) spectroscopy provides a unique window for studying ce...
Cerebral metabolism is compartmentalized between neurons and glia. Although glial glycolysis is thou...
Oxygen metabolism is uniquely compartmentalized between neurons and glia, the latter comprising abou...
Unraveling the energy metabolism and the hemodynamic outcomes of excitatory and inhibitory neuronal ...
Unraveling the energy metabolism and the hemodynamic outcomes of excitatory and inhibitory neuronal ...
The brain uses lactate produced by glycolysis as an energy source. How lactate originated from the b...
Astrocytes have recently become a major center of interest in neurochemistry with the discoveries on...
The measurement of metabolism-related processes in vivo is a critical prerequisite for a better unde...
The combination of dynamic (13)C MRS data under infusion of (13)C-labelled substrates and compartmen...
The combination of dynamic (13)C MRS data under infusion of (13)C-labeled substrates and compartment...
Cerebral function is associated with exceptionally high metabolic activity, and requires continuous ...
Carbon-13 nuclear magnetic resonance spectroscopy in combination with the infusion of (13)C-labeled ...
(13)C magnetic resonance spectroscopy (MRS) combined with the administration of (13)C labeled substr...
Cerebral function is associated with high metabolic activity that is supported by continuous supply ...
Localized 13C nuclear magnetic resonance (NMR) spectroscopy provides a unique window for studying ce...
Cerebral metabolism is compartmentalized between neurons and glia. Although glial glycolysis is thou...
Oxygen metabolism is uniquely compartmentalized between neurons and glia, the latter comprising abou...
Unraveling the energy metabolism and the hemodynamic outcomes of excitatory and inhibitory neuronal ...
Unraveling the energy metabolism and the hemodynamic outcomes of excitatory and inhibitory neuronal ...
The brain uses lactate produced by glycolysis as an energy source. How lactate originated from the b...
Astrocytes have recently become a major center of interest in neurochemistry with the discoveries on...
The measurement of metabolism-related processes in vivo is a critical prerequisite for a better unde...
The combination of dynamic (13)C MRS data under infusion of (13)C-labelled substrates and compartmen...