Purpose: To demonstrate the application of Mescher-Garwood (MEGA) point-resolved spectroscopy sequence (PRESS) editing to the detection of lactate in the brain at 3T and to investigate changes in lactate concentration associated with inspiratory gas challenges. Materials and Methods: Edited lactate measurements were made in six healthy volunteers while the subjects breathed normoxic (21% O2), hypoxic (12% O2), and hyperoxic (40% O2) gas mixtures. Lactate concentration was quantified relative to the unsuppressed water signal from the same volume. Results: Lactate concentration was elevated in all subjects during hypoxia in a highly significant fashion (mean increase = 39%; P = 0.0003). There was no significant change seen in hyperoxia. ...
We describe a novel magnetic resonance imaging technique to directly assess the metabolic integrity ...
The dynamics of l-lactate transport across the blood-brain barrier (BBB) and its cerebral metabolism...
Changes in the metabolic state of the brain can occur, for example, as a result of neuronal activity...
Purpose: To demonstrate the application of Mescher-Garwood (MEGA) point-resolved spectroscopy seque...
SUMMARY: In clinical MR spectroscopy at higher field strengths, lactate may show reduced or absent s...
The development of 1H Magnetic Resonance Spectroscopy (MRS) techniques has made it possible to detec...
Proton nuclear magnetic resonance spectroscopy is a unique method to monitor noninvasively the conce...
Estimation of metabolic changes during neuronal activation represents a challenge for in vivo MRS, e...
Background: Brain magnetic resonance spectroscopy (MRS) has been reported to be a valuable noninvasi...
Lactate levels are measurable by MRS and are related to neural activity. Therefore, it is of interes...
At an identical workload, blood lactate concentration ([La]) is higher in acute hypoxia (H) versus n...
This assesses the potential of measuring lactate in the human brain using three non-editing MRS meth...
Proton magnetic resonance spectroscopy (MRS) is a powerful non-invasive technique to probe the bioch...
Purpose: The detection and quantification of metabolites relevant for the diagnosis of fatal metabol...
Purpose/Introduction: For cancer and metabolic disorders the concentration of lactate as a metabolit...
We describe a novel magnetic resonance imaging technique to directly assess the metabolic integrity ...
The dynamics of l-lactate transport across the blood-brain barrier (BBB) and its cerebral metabolism...
Changes in the metabolic state of the brain can occur, for example, as a result of neuronal activity...
Purpose: To demonstrate the application of Mescher-Garwood (MEGA) point-resolved spectroscopy seque...
SUMMARY: In clinical MR spectroscopy at higher field strengths, lactate may show reduced or absent s...
The development of 1H Magnetic Resonance Spectroscopy (MRS) techniques has made it possible to detec...
Proton nuclear magnetic resonance spectroscopy is a unique method to monitor noninvasively the conce...
Estimation of metabolic changes during neuronal activation represents a challenge for in vivo MRS, e...
Background: Brain magnetic resonance spectroscopy (MRS) has been reported to be a valuable noninvasi...
Lactate levels are measurable by MRS and are related to neural activity. Therefore, it is of interes...
At an identical workload, blood lactate concentration ([La]) is higher in acute hypoxia (H) versus n...
This assesses the potential of measuring lactate in the human brain using three non-editing MRS meth...
Proton magnetic resonance spectroscopy (MRS) is a powerful non-invasive technique to probe the bioch...
Purpose: The detection and quantification of metabolites relevant for the diagnosis of fatal metabol...
Purpose/Introduction: For cancer and metabolic disorders the concentration of lactate as a metabolit...
We describe a novel magnetic resonance imaging technique to directly assess the metabolic integrity ...
The dynamics of l-lactate transport across the blood-brain barrier (BBB) and its cerebral metabolism...
Changes in the metabolic state of the brain can occur, for example, as a result of neuronal activity...